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Slack / Private Message Drop, p.562 [SLACK_000776] · slack_pm:msg:05870

Page text: p.562 · original PDF

Date
2021-03-02 18:47
Type
chat message · slack
recipient
Kristian G. Andersen, Edward C. Holmes, Andrew Rambaut
speaker
Robert F. Garry

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I'll look - any change to an aromatic amino acid could potentially set up a stronger binding.

In context

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  1. 2021-03-02 18:05 Kristian G. Andersen open
    The screenshot - two bottom sequences = new genomes. Above that, "Type" B.1.429 and above that, Wuhan Hu-1.
  2. 2021-03-02 18:13 Edward C. Holmes open
    Can you tell me what the Australian sequences are? I'll look into it. No way that L455F will have been studied here.
  3. 2021-03-02 18:33 Kristian G. Andersen open
    I can't... We're unfortunately not allowed to pull GISAID IDs... I can see UK has a few of the double mutants too. https://outbreak.info/situation-reports?pango&muts=S%3AN501Y&muts=S%3AL455F
  4. 2021-03-02 18:45 Edward C. Holmes open
    Ok, I'll ask about it.
  5. 2021-03-02 18:47 Robert F. Garry
    I'll look - any change to an aromatic amino acid could potentially set up a stronger binding.
  6. 2021-03-02 18:50 Kristian G. Andersen open
    Yeah, interesting model here: http://biosig.unimelb.edu.au/covid3d/mutation/QHD43416/ACE2_BOAT/L455F/A. But I feel that L452R mutation must mess around with this whole interface, so lord knows what L455F does on top. Probably all just random, but pretty interesting to see 2/6 key binding residues hit in a single virus (and acharacteristic deletion - so probably some funky infection).

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