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H5N1 genetic sequences - 2024+

JWeiland
@JPWeiland
·4h
Ok, this is actually concerning. The sequence of the hospitalized teen with H5N1 has been released. Both of these mutation sites are known to impact α2,6 binding that is needed for human to human transmissibility. Need top experts on H5N1 to immediately to look into this.​

JWeiland
@JPWeiland
3h
The right mutations at these sites can, on paper, significantly increase h-h transmission. That's why there needs to be immediate focus on this sample. It's somewhat unclear if the mutations occurred in this patient or prior to their infection.


JWeiland
@JPWeiland
·3h
It is also concerning that this is the first severe case we've had in North America out of many now. Is it a coincidence that these potentially h-h supporting mutations are linked to the most severe outcome?​


JWeiland
@JPWeiland
·37m
I'd like to see some more clarification of the exact mutations at 190 and 226, and what the predicted shift is for each. It's also been suggested that there may be both the original amino acids AND the mutations in the same sample. This might suggest they evolved in this pt.​
Click image for larger version  Name:	GciMehWWEAAIR7U.jpg Views:	1 Size:	165.5 KB ID:	1000600

JWeiland
@JPWeiland
·35m
The details regarding this case are also concerning. This is the first very severe case in NA and in a healthy teen.. is that related to the mutations or a coincidence? This patient also had no known exposure history to wild or farmed animals
 
0bFuSc8
@0bFuSc8
16h
My guess is PB E627 developed in the human case during #H5N1 infection – Closest D1.1 seqs from CAN wild birds have PB2 627E W/input frm
@HNimanFC
, seems to be ~50/50 627E & 627K – IMO wld be consistent w/developing in the human case​


@HNimanFC
8h
RED FLAG Warning H5 seq of BC Teen mixed signals at TWO key positions E202X is position 190 using H3 numbering G238X is position 226 using H3 numbering 226 and 228 are THE key positions in HA RBD also has mixed signal for PB2 E627K Three key changes in GoF studies (226 228 627)​
 
11h
@HNimanFC
Here is the bottom portion of the updated GISAID N1 tree which has added the BC teen and one of the BC farm #H5N1 D1.1 seqs Branch of interest is at the bottom has labeled the 3 seqs with S247N (Tamiflu resistance) From 3 cullers infected in Franklin Co WA who traveled to OR​

GcgXpmRW8AArCAM.jpg
 
H5N1 Bird Flu continues to take its toll in the United States, also affecting British Columbia


Clade 2.3.4.4b of the highly pathogenic avian influenza (HPAI) virus causing outbreaks in wild and domestic birds around the world, continues to spread in dairy cows, poultry and other animals across the United States. Since April, the U.S. CDC confirmed 52 human cases through genome sequence analysis. In three of these cases, the amino acid substitution NA-S247N was identified that may slightly reduce susceptibility to the neuraminidase inhibitor oseltamivir in laboratory tests. The CDC also identified a different change in the polymerase acidic (PA) protein of a virus collected from a recently confirmed human case of H5N1 bird flu in California.

more....


https://gisaid.org/resources/gisaid...nfluenza-outbreak-in-the-united-states/#c5130
 
Last edited by a moderator:

Raj Rajnarayanan
@RajlabN


#H5N1 #AvianInfluenza updates Quick analysis of the sequence uploaded to
@gisaid
from #Washington (Host: Human; Collected 10/29/24) HA mutations: V11I, T52A, K341R, N491D Ref: A/Astrakhan/3212/2020 1/n
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11:28 AM · Nov 19, 2024
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Raj Rajnarayanan
@RajlabN
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PB2 mutations: K389R, V478I, M676T Ref: A/Duck/Guangdong/E1/2012 2/n
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Raj Rajnarayanan
@RajlabN
·
1h


NA mutations: T8I, V20I, M23V, Y44N, Q45H, P48T, I53V, V67I, F74L, L75I, T81D, S82P, T84A, N221S, V234I, V241I, K257R, D259E, G286S, D287E, I288V, N329S, S336G, M338V, E395A, K432R Ref: A/AmericanWigeon/SouthCarolina/22-000345-001/2021 3/n
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Updated analysis from Nov. 20, 2024

Post




See new posts Conversation


Raj Rajnarayanan
@RajlabN


#H5N1 #AvianInfluenza updates (2.3.4.4b; D.1*) Quick analysis of the two avian flu sequences uploaded from British Columbia, #Canada (#Turkey & #Chicken) HA mutations: V11I, T52A, K341R, N491D Reference: A/Astrakhan/3212/2020 1/n
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2:55 PM · Nov 20, 2024
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Raj Rajnarayanan
@RajlabN
·
14h


PB2 mutations: K389R, V478I, M676T The sequence from turkey had an additional H127N mutation Reference: A/Duck/Guangdong/E1/2012 2/n
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Raj Rajnarayanan
@RajlabN
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14h


NA mutations: T8I, V20I, M23V, Y44N, Q45H, P48T, I53V, V67I, F74L, L75I, T81D, S82P, T84A, N221S, V234I, V241I, K257R, D259E, P272S, H275Y, G286S, D287E, I288V, N329S, S336G, M338V, E395A H275Y - known molecular marker of oseltamivir resistance 3/n
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Raj Rajnarayanan
@RajlabN
·
14h


more about NA H275Y mutation

Surveillance for neuraminidase inhibitor resistance among human influenza A and B viruses circula...
From pubmed.ncbi.nlm.nih.gov






 
hat tip Shiloh

Genetic Sequences of Highly Pathogenic Avian Influenza A(H5N1) Viruses Identified in a Person in Louisiana

What to know


CDC has sequenced the influenza viruses in specimens collected from the patient in Louisiana who was infected with, and became severely ill from HPAI A(H5N1) virus. The genomic sequences were compared to other HPAI A(H5N1) sequences from dairy cows, wild birds and poultry, as well as previous human cases and were identified as the D1.1 genotype. The analysis identified low frequency mutations in the hemagglutinin gene of a sample sequenced from the patient, which were not found in virus sequences from poultry samples collected on the patient’s property, suggesting the changes emerged in the patient after infection.
Background


This is a technical summary of an analysis of the genomic sequences of the viruses identified in two upper respiratory tract specimens from the patient who was severely ill from an infection with highly pathogenic avian influenza (HPAI) A(H5N1) virus in Louisiana. The patient was infected with A(H5N1) virus of the D1.1 genotype virus that is closely related to other D1.1 viruses recently detected in wild birds and poultry in the United States and in recent human cases in British Columbia, Canada, and Washington State.

This avian influenza A(H5N1) virus genotype is different from the B3.13 genotype spreading widely and causing outbreaks in dairy cows, poultry, and other animals, with sporadic human cases in the United States. Deep sequencing of the genetic sequences from two clinical specimens from the patient in Louisiana was performed to look for changes associated with adaptation to mammals. There were some low frequency changes in the hemagglutinin (HA) gene segment of one of the specimens that are rare in people but have been reported in previous cases of A(H5N1) in other countries and most often during severe infections. One of the changes found was also identified in a specimen collected from the human case with severe illness detected in British Columbia, Canada, suggesting they emerged during the clinical course as the virus replicated in the patient. Analysis of the N1 neuraminidase (NA), matrix (M) and polymerase acid (PA) genes from the specimens showed no changes associated with known or suspected markers of reduced susceptibility to antiviral drugs.

CDC Update


December 26, 2024 – CDC has sequenced the HPAI A(H5N1) avian influenza viruses in two respiratory specimens collected from the patient in Louisiana who was severely ill from an A(H5N1) virus infection. CDC received two specimens collected at the same time from the patient while they were hospitalized for severe respiratory illness: a nasopharyngeal (NP) and combined NP/oropharyngeal (OP) swab specimens. Initial attempts to sequence the virus from the patient's clinical respiratory specimens using standard RNA extraction and multisegment-RTPCR (M-RTPCR)1 techniques yielded only partial genomic data and virus isolation was not successful. Nucleic acid enrichment was needed to sequence complete genomes with sufficient coverage depth to meet quality thresholds. CDC compared the influenza gene segments from each specimen with A(H5N1) virus sequences from dairy cows, wild birds, poultry and other human cases in the U.S. and Canada. The genomes of the virus (A/Louisiana/12/2024) from each clinical specimen are publicly posted in GISAID (EPI_ISL_19634827 and EPI_ISL_19634828) and GenBank (PQ809549-PQ809564).

Summary of amino acid mixtures identified in the hemagglutinin (HA) of clinical specimens from the patient.

Overall, the hemagglutinin (HA) sequences from the two clinical specimens were closely related to HA sequences detected in other D1.1 genotype viruses, including viruses sequenced from samples collected in November and December 2024 in wild birds and poultry in Louisiana. The HA genes of these viruses also were closely related to the A/Ezo red fox/Hokkaido/1/2022 candidate vaccine virus (CVV) with 2 or 3 amino acid changes detected. These viruses have, on average, 3 or 4 amino acid changes in the HA when compared directly to the A/Astrakhan/3212/2020 CVV sequence. These data indicate the viruses detected in respiratory specimens from this patient are closely related to existing HPAI A(H5N1) CVVs that are already available to manufacturers, and which could be used to make vaccines if needed.

There were some differences detected between the NP/OP and the NP specimens. Despite the very close similarity of the D1.1 sequences from the Louisiana human case to bird viruses, deep sequence analysis of the HA gene segment from the combined NP/OP sample detected low frequency mixed nucleotides corresponding to notable amino acid residues (using mature HA sequence numbering):
  • A134A/V [Alanine 88%, Valine 12%];
  • N182N/K [Asparagine 65%, Lysine 35%]; and
  • E186E/D [Glutamic acid 92%, Aspartic Acid 8%].
The NP specimen, notably, did not have these low frequency changes indicating they may have been detected from swabbing the oropharyngeal cavity of the patient. While these low frequency changes are rare in humans, they have been reported in previous cases of A(H5N1) in other countries and most often during severe disease 2345. The E186E/D mixture, for example, was also identified in a specimen collected from the severe human case detected in British Columbia, Canada 67.

This summary analysis focuses on mixed nucleotide detections at residues A134V, N182K, E186D as these changes may result in increased virus binding to α2-6 cell receptors found in the upper respiratory tract of humans. It is important to note that these changes represent a small proportion of the total virus population identified in the sample analyzed (i.e., the virus still maintains a majority of 'avian' amino acids at the residues associated with receptor binding). The changes observed were likely generated by replication of this virus in the patient with advanced disease rather than primarily transmitted at the time of infection. Comparison of influenza A(H5) sequence data from viruses identified in wild birds and poultry in Louisiana, including poultry identified on the property of the patient, and other regions of the United States did not identify these changes. Of note, virus sequences from poultry sampled on the patient's property were nearly identical to the virus sequences from the patient but did not have the mixed nucleotides identified in the patient's clinical sample, strongly suggesting that the changes emerged during infection as virus replicated in the patient. Although concerning, and a reminder that A(H5N1) viruses can develop changes during the clinical course of a human infection, these changes would be more concerning if found in animal hosts or in early stages of infection (e.g., within a few days of symptom onset) when these changes might be more likely to facilitate spread to close contacts. Notably, in this case, no transmission from the patient in Louisiana to other persons has been identified. The Louisiana Department of Public Health and CDC are collaborating to generate additional sequence data from sequential patient specimens to facilitate further genetic and virologic analysis.

Additional genomic analysis

The genetic sequences of the A(H5N1) viruses from the patient in Louisiana did not have the PB2 E627K change or other changes in polymerase genes associated with adaptation to mammals and no evidence of low frequency changes at critical positions. And, like other D1.1 genotype viruses found in birds, the sequences lack PB2 M631L, which is associated with viral adaptation to mammalian hosts, and which has been detected in >99% of dairy cow sequences but is only sporadically found in birds. Analysis of the N1 neuraminidase (NA), matrix (M) and polymerase acid (PA) genes from the specimens showed no changes associated with known or suspected markers of reduced susceptibility to antiviral drugs. The remainder of the genetic sequences of A/Louisiana/12/2024 were closely related to sequences detected in wild bird and poultry D1.1 genotype viruses, including poultry identified on the property of the patient, providing further evidence that the human case was most likely infected following exposure to birds infected with D1.1 genotype virus.

Follow Up Actions

Overall, CDC considers the risk to the general public associated with the ongoing U.S. HPAI A(H5N1) outbreak has not changed and remains low. The detection of a severe human case with genetic changes in a clinical specimen underscores the importance of ongoing genomic surveillance in people and animals, containment of avian influenza A(H5) outbreaks in dairy cattle and poultry, and prevention measures among people with exposure to infected animals or environments.

https://www.cdc.gov/bird-flu/spotlights/h5n1-response-12232024.html
 
Bird flu virus shows mutations in first severe human infection in US, CDC says

Mutations are rare but have been reported in some cases in other countries and most often in extreme infections
Thu 26 Dec 2024 18.59 EST


The US Centers for Disease Control and Prevention said on Thursday its analysis of samples from the first severe case of bird flu in the country last week showed mutations not seen in samples from an infected backyard flock on the patient’s property.

The CDC said the patient’s sample showed mutations in the hemagglutinin (HA) gene, the part of the virus that plays a key role in it attaching to host cells.

The agency said the risk to the general public from the outbreak has not changed and remains low.
​....The patient had been infected with the D1.1 genotype of the virus that had been recently detected in wild birds and poultry in the US, and not the B3.13 genotype detected in dairy cows, humans and some poultry in multiple states.

The mutations seen in the patient are rare but have been reported in some cases in other countries and most often during severe infections. One of the mutations was also seen in another severe case in British Columbia, Canada.....:tiphat:

https://www.theguardian.com/world/2024/dec/26/bird-flu-virus-mutations
 
CDC says H5N1 bird flu sample shows mutations that may help the virus bind to cells in the upper airways of people

The mutations likely developed post-infection, the agency said

By Helen Branswell

Dec. 26, 2024

Senior Writer, Infectious Diseases

Genetic sequences of H5N1 bird flu viruses collected from a person in Louisiana who became severely ill show signs of development of several mutations thought to affect the virus’ ability to attach to cells in the upper airways of humans, the Centers for Disease Control and Prevention reported on Thursday.

One of the mutations was also seen in a virus sample taken from a teenager in British Columbia who was in critical condition in a Vancouver hospital for weeks after contracting H5N1....
fj
Scott Hensley, a professor of microbiology at the University of Pennsylvania’s Perelman School of Medicine, cautioned against reading too much into data from two severe cases, though he admitted the CDC’s report was “enough to raise my eyebrows.”

“It’s not great. It’s not great news,” Hensley told STAT...“The changes observed were likely generated by replication of this virus in the patient with advanced disease rather than primarily transmitted at the time of infection,” the report stated.

That is believed to have been the case with the British Columbia patient as well, though health officials there had no source virus to study because they could never determine how the teen became infected......
:tiphat:

https://www.statnews.com/2024/12/26...bind-to-cells-in-the-upper-airways-of-people/
 
Raj Rajnarayanan
@RajlabN
·
3h


Genome Sequences were uploaded to
@GISAID
rapidly
Quote
Ngt0V722_normal.jpg

Raj Rajnarayanan
@RajlabN
·
Dec 26, 2024
[HASHTAG="c2811"]H5N1[/HASHTAG] #AvianInfluenza updates Quick analysis of the two H5N1 (D1.1 genotype) sequences from [HASHTAG="c1956"]Louisiana[/HASHTAG] Human Case has been updated (2 seqs from the same patient) HA mutations: V11I, T52A, K341R, N491D One of them had F86X, *N198X* Ref: A/Astrakhan/3212_cell/2020 1/n
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Raj Rajnarayanan
@RajlabN
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3h


key report from
@CDCgov
focusing on mixed nucleotide detections at HA residues A134V, N182K, E186D as these changes may result in increased virus binding to α2-6 cell receptors found in the upper respiratory tract of humans.

cdc.gov
Genetic Sequences of Highly Pathogenic Avian Influenza A(H5N1) Viruses Identified in a Person in...
CDC has sequenced the influenza viruses in specimens collected from the patient in Louisiana who was

 
Translation Google

H5N1 cases in B.C. and Louisiana studied to understand the virus

The Canadian Press
Posted yesterday at 2:12 PM CST

The British Columbia Centre for Disease Control (BCCDC) says it is comparing the genetic characteristics of the bird flu case of the teenage girl infected in British Columbia with those of the Louisiana patient who died earlier this week .

Agatha Jassem, clinical microbiologist and co-head of the virology laboratory at the public health laboratory of BCCDC, explains that the goal is to understand how the two cases are linked to each other and how the viruses circulate in bird populations.

This will help assess how easily they adapt and transmit between animals and humans. Both cases are linked to viruses detected in wild birds and poultry.

While there is no evidence of human-to-human infection in either case, it is something experts are keeping an eye on.

Louisiana health officials announced Monday that a patient hospitalized with severe bird flu has died, the first death from the H5N1 virus in the United States.

In Vancouver, the 13-year-old girl was still hospitalized last week, but was no longer in intensive care.

Jassem said the American patient shared one of three genetic mutations identified in the Canadian case, which infectious disease specialists say could make it easier for the virus to spread from person to person.

The U.S. Centers for Disease Control and Prevention (CDC) said the common hemagglutinin mutation between the two cases was not found in poultry samples taken from the Louisiana patient's property, suggesting the changes appeared in the patient after he was infected.

In the case of British Columbia, Canadian health officials still do not know how the teenager became infected.

It is important to understand how much of this mutation is present in viruses and how it evolves during an infection, in order to better understand the adaptation of this virus in humans , explains Agatha Jassem.

The British Columbia lab is conducting comparative genomic analysis, testing samples taken on different days using various methods to determine how mutations alter virus replication in the human respiratory tract.

Michelle Wille, a senior research fellow at the Centre for Pathogen Genomics at the University of Melbourne, believes the analysis will help to highlight mutations of concern.

The fact that this mutation has appeared in more than one severe human case suggests that it is an important mutation to monitor through genomic surveillance.

The teenage girl's infection in British Columbia is the first human case of H5N1 bird flu contracted in Canada , confirmed last November by the Public Health Agency of Canada.

https://ici.radio-canada.ca/nouvelle/2131430/grippe-aviaire-h5n1-mort-infection
 
1/29/25
Post
Raj Rajnarayanan
@RajlabN
#H5N1 #AvianInfluenza updates Quick analysis of the #AvianFlu sequence uploaded to
@GISAID
from #UK Sample collected on 01/2025 from an In-patient Clade 2.3.4.4b genotype DI.2 HA mutations: A99D, P152S, S179N, T211A, A230S, I351X, S519N Ref: A/Astrakhan/3212/2020

Raj Rajnarayanan
@RajlabN
·1h
PB2 mutations: I292V, K389R, L464M, D611G, V667I, M676T Ref: A/Duck/Guangdong/E1/2012
2/n

Raj Rajnarayanan
@RajlabN
·1h
NA mutations: K6R, T8I, I10T, V16I, V20I, F74C, I106V, D259E, D287E, Q308K, G331R, E395A, S405T Ref: A/AmericanWigeon/SouthCarolina/22-000345-001/2021
3/n


Raj Rajnarayanan
@RajlabN
As @Nucleocapsoid pointed out.. HA mutation A230S is implicated in the literature as potential "host specificity shift" mutation other key HA mutations: A99D (mild drug resistance) & P152S (antigenic drift/escape mutation)
4/n​


 

Raj Rajnarayanan
@RajlabN
·
11h




#H5N1 #AvianInfluenza updates Clade 2.3.4.4b Genotype D1.1 71 new sequences were uploaded to
@gisaid
from #Alabama, #Arkansas, #Idaho, #Iowa, #Kansas, #Minnesota, #Nebraska, #Ohio, #Oregon, #SouthDakota, #Wisconsin 1/n
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Raj Rajnarayanan
@RajlabN
·
11h




33 #Chicken, 16 #Turkey, 10 #Pheasant, 4 #Duck, 2 #Swan, 2 #Goose, 2 #Gunieafowl, 1 #Cat, 1 #Pelican 2/n​


------------------------------------------------------------------------------------

Raj Rajnarayanan
@RajlabN




#H5N1 #AvianInfluenza updates Quick analysis of 5 avian flu sequences sampled from #Chicken uploaded to
@gisaid
from #Arkansas - 2.3.4.4b clade & D1.1 genotype PB2 mutations: K389R, V478I, M676T 2 of them contained additional R62Q & M467L Ref: A/Duck/Guangdong/E1/2012 1/n
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4:50 PM · Feb 6, 2025
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Post your reply


Reply
Raj Rajnarayanan
@RajlabN
·
16h




NA mutations: T8I, V20I, M23V, Y44N, Q45H, P48T, I53V, V67I, F74L, L75I, T81D, S82P, T84A, N221S, V234I, V241I, F256L, K257R, D259E, G286S, D287E, I288V, N329S, S336G, M338V, E395A Ref: A/AmericanWigeon/SouthCarolina/22-000345-001/2021 2/n
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Raj Rajnarayanan
@RajlabN
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16h




HA mutations: V11I, T52A, V285L, K341R, N491D one of them had additional I10V Ref: A/Astrakhan/3212/2020 3/n


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@RajlabN
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Sample Collection dates: 12-17-2024






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hat tip Helen Branswell



The Occurrence of Another Highly Pathogenic Avian Influenza (HPAI) Spillover from Wild Birds into Dairy Cattle

https://www.aphis.usda.gov/sites/default/files/dairy-cattle-hpai-tech-brief.pdf

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Raj Rajnarayanan
@RajlabN
·
13m




There was a H5N1 genotype D1.1 with PB2: D701N uploaded in Jan
2025 (collection date 2024; location unknown)
A/cat/USA/038917-001/2024 and a bobcat with PB2: E627K uploaded in Jan 2025 (collection date 2024;
location unknown) A/bobcat/USA/038225-002/2024​
 
Raj Rajnarayanan
@RajlabN
updates 2/25/25

Closely following the appearance of PB2: D701N (#Nevada) and PB2: E627K (#Wisconsin) among recently uploaded sequences These mutations have been described in the literature as mammalian adaptation signature/Host specificity shift/Virulence​

Quick analysis of the #avianflu sequence from #Wisconsin human case uploaded in
@GISAID
by #Colorado Department of Health Lab PB2 mutations: K389R, I399X, V478I, E627K, M676T Ref: A/Duck/Guangdong/E1/2012


Raj Rajnarayanan
@RajlabN
·
1h
HA mutations: V11I, T52A, K341R, N491D Ref: A/Astrakhan/3212/2020 2/n
Raj Rajnarayanan
@RajlabN
·
1h
NA mutations: V20I, M23V, Y44N, Q45H, P48T, I53V, V62M, V67I, F74L, L75I, T81D, S82P, T84A, N221S, V234I, V241I, K257R, D259E, P272S, G286S, D287E, I288V, N329S, S336G, M338V, E395A REf: A/AmericanWigeon/SouthCarolina/22-000345-001/2021


 
Bird flu-infected San Bernardino County dairy cows may have concerning new mutation

​snip

The mutation is called PB2 E627K, and it was seen in a Texas dairy worker last March. It was not seen again until these sequences were uploaded late Tuesday. The data were uploaded by the U.S. Department of Agriculture’s National Veterinary Laboratory Services to a public access genetic repository known as the Global Initiative on Sharing Avian Influenza Data, or GISAID.​

snip

Richard Webby, a virologist at St. Jude Children’s Research Hospital, in Memphis, Tenn., said that the mutation “on its own is not a game changing worry for me.”

However, he said, if there is evidence that viruses with this mutation are actually spreading in cows “or any other host for that matter.... it’s not a stretch to think it could help enable more human infections, maybe with more disease.”


more...https://www.latimes.com/environment...-widespread-h5n1-bird-flu-infection-in-cattle
 
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