UniProt is not niche. It contains curated information about all proteins across numerous domains.
UniProt is not niche. It contains curated information about all proteins across numerous domains.
post is not about pharma specifically, but about general bio-medical literature, including genes, diseases, symptoms, etc.
> proteins make up more than 95% of the targets of the pharmaceutical industry.
do you have references to support this? Some google search says it is 280B market out of 1.5T total pharma market: https://www.alliedmarketresearch.com/protein-therapeutics-ma... https://www.statista.com/topics/1764/global-pharmaceutical-i...
Also, it is likely important steps how to research and produce protein drugs, but the end target is to cure diseases, so you need lots of additional data about diseases of all types, symptoms, pathways, trials, etc.
People are being dismissive of your comments because to say that proteins are niche in the context of pharma is like saying advertising is niche in the context of Meta and Google.
its all about how you define word "niche", for google, main revenue stream is supported by several pillars: search tech, infra tech, ads tech, ecosystem+network effect, human management. You remove one pillar, and everything is destroyed, so one can say ads is one of the niches in their food chain. I suspect with proteins it is about the same.
> in the context of pharma
there is no context of pharma. Post is about more broad bio-medical publications.
Literally the first line in the comment that started this thread.
that's one of the themes (and you are already working hard to stretch drugs pharma to "biochemistry"), if you can't see other themes in his examples and screenshots, I think this discussion is not interesting to me.
I'm now not entirely sure what your experience is with bio sciences. You're definitely coming at it from an odd angle though!
You never know, maybe you'll end up contributing to our understanding of life, maybe (indirectly) even save a few lives!
life science is one of potential applications if there is an interest and money.
But if you mean in general if you're capable of looking at metabolic pathways where each protein catalyses a step in the pathway, that's definitely interesting. If a certain person has a flawed gene coding for protein X, that could indeed cause a problem.
To find valid answers, you might need to eg. track nodes and states in a graph, to figure all the consequences of a break. Not all types of storage systems/engines are equally good at that.
[1] https://en.wikipedia.org/wiki/Transcription_(biology)
[2] https://en.wikipedia.org/wiki/Translation_(biology)
edit: s/protein pathway/metabolic pathway/
Yes, I built system which traverses paths in graphs with 1B nodes and 10B links in 1h on affordable server. But that's only one part of the puzzle.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6314433/ Check out this article for example.
Even when a drug target is unknown, or remains mysterious, very high chances are that the target is a protein. DNA or RNA as targets are niche (DNA is often avoided as a target on purpose and it’s hard to be specific to it without DNA-like material, and RNA is still hard to target effectively, though things are improving). There is not much else of use in the cells (lipids, sugars, cofactors, and metabolites, some examples of which have been targeted by a couple drugs each over the long history of trials, often unintentionally.
Small molecules are an excellent modality for an eventual approved therapy. They almost always (so far) targets a protein. They are hard to design but when they are done well they expose the target to something nature hasn’t seen before in order to get a desired effect. Sometimes people don’t care about the target itself (think recreational drugs, or phenotypic drug discovery), but the target typically remains a protein.
Proteins make up the machinery of the cell. You jam or modify them to achieve desired effects.