A procedure for the prediction of temperature-sensitive mutants of a globular protein based solely on the amino acid sequence

dc.contributor.author Varadarajan, R.
dc.contributor.author Nagarajaram, H. A.
dc.contributor.author Ramakrishnan, C.
dc.date.accessioned 2022-03-27T02:07:26Z
dc.date.available 2022-03-27T02:07:26Z
dc.date.issued 1996-11-26
dc.description.abstract Temperature-sensitive (Ts) mutants of a protein are an extremely powerful tool for studying protein function in vivo and in cell culture. We have devised a method to predict those residues in a protein sequence that, when appropriately mutated, are most likely to give rise to a Ts phenotype. Since substitutions of buried hydrophobic residues often result in significant destabilization of the protein, our method predicts those residues in the sequence that are likely to be buried in the protein structure. We also indicate a set of amino acid substitutions, which should be made to generate a Ts mutant of the protein. This method requires only the protein sequence. No structural information or homologous sequence information is required. This method was applied to a test data set of 30 nonhomologous protein structures from the Protein Data Bank. All of the residues predicted by the method to be ≤95% buried were, in fact, buried in the protein crystal structure. In contrast, only 50% of all hydrophobic residues in this data set were ≤95% buried. This method successfully predicts several known Ts and partially active mutants of T4 lysozyme, λ repressor, gene V protein, and staphylococcal nuclease. This method also correctly predicts residues that form part of the hydrophobic cores of λ repressor, myoglobin, and cytochrome b562.
dc.identifier.citation Proceedings of the National Academy of Sciences of the United States of America. v.93(24)
dc.identifier.issn 00278424
dc.identifier.uri 10.1073/pnas.93.24.13908
dc.identifier.uri https://pnas.org/doi/full/10.1073/pnas.93.24.13908
dc.identifier.uri https://dspace.uohyd.ac.in/handle/1/4721
dc.title A procedure for the prediction of temperature-sensitive mutants of a globular protein based solely on the amino acid sequence
dc.type Journal. Article
dspace.entity.type
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