3 ms·
We actually know the primary sequence (i.e. order of amino acids) for every gene in the body. It’s trivially easy (a senior undergrad in bioinformatics ought to
by rflrob 5y ago
We actually know the primary sequence (i.e. order of amino acids) for every gene in the body. It’s trivially easy (a senior undergrad in bioinformatics ought to be able to do it with little or no handholding) to look for genes with even a vaguely similar sequence. Protein folding is a hard problem, but the space of possible solutions is large enough that it’s unlikely that an unrelated sequence would have a similar enough structure to be recognized by the same antibodies.
Most variation between populations is not so much what genes are there, but how at what level they are expressed, point mutations, and short repeats (all of which are unlikely to create totally new structures). For there to be a population that had spike protein expressed, there would have to have been some sort of horizontal gene transfer into the germline (which is relatively protected from mutations for precisely this reason) at some point in the past. There’s reasonable atlases of human genetic variation (see, for example, the 1000 genomes project), so if there was some large population of people with any obviously new viral sequence, we’d see it.
Plus, if a person somehow, miraculously, had a protein that looked like Spike, their immune system should already be tuned to ignore it. (I have a PhD in biology, but immunology was not something I have much expertise in, so take this with a grain of NaCl).
- thehappypm 5y agoAnd, that person who has a Spike protein naturally would be in pretty deep trouble if infected with Covid -- since the immune system wouldn't trigger on the spike! Though antibodies can also attack non-spike things.