AlphaFold2 examples from CASP 14: Difference between revisions

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===ORF8 is not a novel fold===
===ORF8 is not a novel fold===
Less than 2% of new [[empirically-determined structures]] have novel folds; that is, folds not aready represented in the [[PDB]]<ref name="cath2011">PMID: 21097779</ref>. When chain A of [[7jx6]] was submitted to Dali<ref name="dali2020">PMID: 31606894</ref> (February, 2021), the top hit was the N-terminal domain of two domains in [[5a2f]], the CD166 human cell surface receptor involved in activation of T lymphocytes. The Z-score was 7.1, and 88 alpha carbons aligned with RMSD 3.2 Å. Swiss-PdbViewer obtained RMSD 1.95 Å for 48 alpha carbons<ref name="fitselimprov">Using Swiss-PdbViewer's ''Fit from Selection'' with 102 residues selected from each structure, followed by ''Improve Fit''.</ref>. Dali reported the identity as 6% in its structure-based sequence alignment. Sequence alignment by MAFFT<ref name="mafft">PMID: 23329690</ref> obtained 18% sequence identity using more and larger gaps. The structural similarity between Dali's top hit and 7jx6 is not as close as for AlphaFold2's prediction, but is closer than the 2nd best prediction (see Table I below). Dali's top hit has a single disulfide bond (compare with Table I). In conclusion, '''ORF8 does not have a novel fold'''<ref name="holm">The interpretation of Dali's result to mean that ORF8 does not have a novel fold was kindly confirmed by Liisa Holm, personal communication to [[User:Eric Martz|Eric Martz]].</ref>.
Less than 2% of new [[empirically-determined structures]] have novel folds; that is, folds not aready represented in the [[PDB]]<ref name="cath2011">PMID: 21097779</ref>. When chain A of [[7jx6]] was submitted to Dali<ref name="dali2020">PMID: 31606894</ref> (February, 2021), the top hit was the N-terminal domain of two domains in [[5a2f]], the CD166 human cell surface receptor involved in activation of T lymphocytes. The Z-score was 7.1, and 88 alpha carbons aligned with RMSD 3.2 Å. Swiss-PdbViewer obtained RMSD 1.95 Å for 48 alpha carbons<ref name="fitselimprov">Using Swiss-PdbViewer's ''Fit from Selection'' with 102 residues selected from each structure, followed by ''Improve Fit''.</ref>. Dali reported the identity as 6% in its structure-based sequence alignment. Sequence alignment by MAFFT<ref name="mafft">PMID: 23329690</ref> obtained 18% sequence identity using more and larger gaps. <scene name='87/875686/Dali_5a2f_vs_7jx6_yale/1'>The structural similarity between Dali's top hit and 7jx6</scene> is not as close as for AlphaFold2's prediction, but is closer than the 2nd best prediction (see Table I below). Dali's top hit has a single disulfide bond (compare with Table I). In conclusion, '''ORF8 does not have a novel fold'''<ref name="holm">The interpretation of Dali's result to mean that ORF8 does not have a novel fold was kindly confirmed by Liisa Holm, personal communication to [[User:Eric Martz|Eric Martz]].</ref>.


===AlphaFold2 Prediction for ORF8===
===AlphaFold2 Prediction for ORF8===

Revision as of 22:48, 28 February 2021

This page is under construction. Eric Martz 01:03, 22 February 2021 (UTC)

Prediction of protein structures from amino acid sequences, homology modeling, has been extremely challenging. In 2020, breakthrough success was achieved by AlphaFold2[1], a project of DeepMind. For an overview of this breakthrough, documented by the bi-annual prediction competition empirical models, please see 7jtl. Below are illustrated some examples of predictions from that competition.

Drag the structure with the mouse to rotate

References

  1. ↑ Senior AW, Evans R, Jumper J, Kirkpatrick J, Sifre L, Green T, Qin C, Zidek A, Nelson AWR, Bridgland A, Penedones H, Petersen S, Simonyan K, Crossan S, Kohli P, Jones DT, Silver D, Kavukcuoglu K, Hassabis D. Improved protein structure prediction using potentials from deep learning. Nature. 2020 Jan;577(7792):706-710. doi: 10.1038/s41586-019-1923-7. Epub 2020 Jan, 15. PMID:31942072 doi:https://dx.doi.org/10.1038/s41586-019-1923-7

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