Mega-scale experimental analysis of protein folding stability in biology and design
Par un écrivain mystérieux
Last updated 09 juillet 2024
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Mega-scale experimental analysis of protein folding stability in biology and protein design
![Mega-scale experimental analysis of protein folding stability in biology and design](https://i.ytimg.com/vi/FkUjMKEDCA0/maxresdefault.jpg?sqp=-oaymwEmCIAKENAF8quKqQMa8AEB-AH-CYACvAWKAgwIABABGBMgVSh_MA8=&rs=AOn4CLBQoR777H2e1sB9NCI929Jj_ta5Sg)
Stronger, tighter, and faster: designing new protein functions
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Folding and Stabilization of Native-Sequence-Reversed Proteins
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Mega-scale experimental analysis of protein folding stability in biology and protein design
![Mega-scale experimental analysis of protein folding stability in biology and design](https://www.biorxiv.org/content/biorxiv/early/2022/12/06/2022.12.06.519132/F7.medium.gif)
Mega-scale experimental analysis of protein folding stability in biology and protein design
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Rapid protein stability prediction using deep learning representations
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Protein Design with Guided Discrete Diffusion
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Selection pressures on evolution of ribonuclease H explored with rigorous free–energy–based design
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Global analysis of protein folding using massively parallel design, synthesis, and testing
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Mega-scale experimental analysis of protein folding stability in biology and protein design
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Conserved degronome features governing quality control associated proteolysis
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Global Analysis of Multi-Mutants to Improve Protein Function - ScienceDirect
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Mega-scale experimental analysis of protein folding stability in biology and protein design
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Predicting (and discovering) proteins with multiple conformational states
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Mega-scale experimental analysis of protein folding stability in biology and design
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