Marc Johnson Profile picture
Aug 17 15 tweets 5 min read Read on X
I'm giving the variant update at the SAVE meeting on Monday so I thought I'd put out a preview for comment.

We are now at our 4th 'high water' mark since the Omicron wave based on wastewater surveillance.

1/ Image
I thought I would give an abbreviated summary of the last year in variants.

A little over a year ago BA.2.86 started circulating, a lineage that was almost certainly derived from a persistent infection.
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BA.2.86 was pretty fit, but it was still sensitive to a lot of Class 1 antibodies.

However, it quickly picked up S:L455S (making it JN.1), which evaded these antibodies, and it was off to the races.
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JN.1 played around with a lot of mutations, but its favorite was F456L, a change that it independently picked up at least 20 times.
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We then started seeing lineages that combined 456L with the old favorite R346T, which was the same change that BA.4/5 picked up during the summer 2 years ago.

This happened lots of times, but the best know was probably KP.2.
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But those lineages got some competition when another 456L lineage picked up R493E (KP.3).

For whatever reason this really only happened once. I'm not sure why. It was a C->G mutation, which is rare.

KP.3 seemed to be fitter than the 456L/346T gang.
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I always expected KP.3 to pick up R346T, but there hasn't appeared to be much selective pressure for that to happen. There's probably some redundancy in 346T/493E advantages.

7/
Then the 346T/456L group found a neat trick. They deleted position S31, which gave them the leg up again.

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But of course, KP.3 figured out that it could do that too.
The S31 deletion has occurred lots of times now, but the fittest among them seems to be KP.3.1.1.
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So what does the S31 deletion do. It's been reported to both increase fitness (higher infectivity in pseudotype assays), and antibody evasion.

The deletion introduces a glycosylation site, but it also restores the insertions/deletion balance in that part of Spike.
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RaTG-13 had a glycosylation site at this position too, and I've seen it introduced in lots of cryptic lineages.

However, I never saw the 31 deletion until the JN.1 insertion occurred. Probably because of the insertion/deletion balance thing.

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If I were smart I would put a 3D structure here showing why they insertion/deletion balance is important, but I'm not that smart (and it's just a theory).

12/
So what are we watching now?

There is a chimera-of-chimeras in China called XDV.1 that is doing pretty well there, but not really anywhere else.

Its spike is derived from JN.1, but it doesn't have any of the 'advanced' changes.

It does have the XBB Orf9b:I5T though.

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Finally there is the new chimera that just got designated, XEC. This one just appeared in June and has fared pretty well. I don't think it could keep up with KP.3.1.1 currently, but if it picks up a few more changes it might.

14/ Image
Overall it's an odd time. It's pretty clear that KP.3.1.1 (and equivalent) is going to have a sweep the world the way that JN.1 did, but I'm not sure what happens after that.

We'll be watching.
15/15

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More from @SolidEvidence

Jul 24
Just returning from the CEIRR influenza annual meeting.

Here are my takeaways.

1/
First the bad news.

2.3.4.4b (which the H5 in cattle is derived from) is a bad ass. In birds it is ridiculously contagious, ridiculously promiscuous, and pretty darn deadly. It spread through typical and atypical US bird populations practically instantly.

2/
Now the good news.

The lineage has mixed pathogenicity in mammals (don't let your pet ferrets play near wild birds), but generally is very poor at mammalian respiratory spread, even in species where it is highly pathogenic.

3/
Read 6 tweets
Jul 6
MO COVID wastewater update. Although it's not major, there has been a noticeable uptick on COVID levels the last few weeks.

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In my thinking, there are 3 things that contribute to these fluctuations: the viral lineage, host immunity, and human behavior.
2/
I don't think the viral lineage has much to do with this uptick. We've been experiencing a gradual takeover of a scattering of JN.1 derivatives, but they have been with us for a while and don't seem to correlate with the increase.
3/
Read 7 tweets
Jun 7
Update on the Maryland variant, the highly diverse Delta variant from a sewershed South of Baltimore.
1/ Image
This sewershed only started sequencing earlier this year, so I don't know how long it has been around, but it is clearly Delta-derived, which means the infection probably occurred in the second half of 2021, nearly 3 years ago.
2. Image
The lineage has been showing up pretty consistently in the first sewershed, but on May 21 it also appeared in the sewershed just to the West. Daytrip.
3/ Image
Read 8 tweets
Jun 5
Update on the unexpected H5 detections from wastewater.

Thanks to all that helped figure this out.

1/
There were 4 sewersheds that had detectable H5 from states that have not been reported to have infected herds. Those 4 were from Minnesota and Iowa.

2/
data.wastewaterscan.org/tracker?charts…
The easiest to explain is Mankato. They have a Dairy plant.



MN is not supposed to be in MN herds, but the milk could have been trucked in from SD.
3/ mda.state.mn.us/minnesotadairy…
Image
Read 7 tweets
May 4
A few points about the H5N1 outbreak that I'd like to share.

1. If we had a pan-influenza wastewater screen in place nationally that differentiates the influenza sources by sequencing (which isn't that hard to do), we probably would have detected this outbreak months ago.
1/
BTW, we submitted a CDC proposal earlier this year to do exactly this, but the topic was pulled from the BAA so the proposal wasn't even reviewed.
2/
2. We should not panic about the current outbreak in cattle. You aren't going to get influenza from pasteurized milk, and this virus isn't ready for human-to-human spread (yet).
3/
Read 9 tweets
May 4
Classic new cryptic lineage from Maryland (South of Baltimore). It's a Delta-derivative (2-3 year old infection).
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This one is practically a caricature of a cryptic. It has 6 of the classic Sarbeco reversions.
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I'm too lazy to make a figure, but the core RBD is:
417T, 420N, 431G, 440K, 444R, 446N, 450E, 452Q, 460K, 477N/D, 483Y/F, 484I, 486P, 490Y, 493K, 498Y, 499T, 500N, 501T.
3/
Read 7 tweets

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