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AlphaFold2 Can Predict Single-Mutation Effects
AlphaFold2 (AF) is a promising tool, but is it accurate enough to predict single mutation effects? Here, we report that the localized structural deformation between protein pairs differing by only 1-3 mutations-as measured by the effective strain-is correlated across 3901 experimental and AF-predict...
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Published in: | Physical review letters 2023-11, Vol.131 (21), p.218401-218401, Article 218401 |
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container_end_page | 218401 |
container_issue | 21 |
container_start_page | 218401 |
container_title | Physical review letters |
container_volume | 131 |
creator | McBride, John M Polev, Konstantin Abdirasulov, Amirbek Reinharz, Vladimir Grzybowski, Bartosz A Tlusty, Tsvi |
description | AlphaFold2 (AF) is a promising tool, but is it accurate enough to predict single mutation effects? Here, we report that the localized structural deformation between protein pairs differing by only 1-3 mutations-as measured by the effective strain-is correlated across 3901 experimental and AF-predicted structures. Furthermore, analysis of ∼11 000 proteins shows that the local structural change correlates with various phenotypic changes. These findings suggest that AF can predict the range and magnitude of single-mutation effects on average, and we propose a method to improve precision of AF predictions and to indicate when predictions are unreliable. |
doi_str_mv | 10.1103/PhysRevLett.131.218401 |
format | article |
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title | AlphaFold2 Can Predict Single-Mutation Effects |
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