JOURNAL ARTICLE

Bipartite Tetracysteine Display Requires Site Flexibility for ReAsH Coordination

Abstract

Abstract Flexibility required : We designed intramolecular bipartite tetracysteine sites in loops of p53 and the β‐sheets of EmGFP. We found that ReAsH binding preferentially favors tetracysteine sites with flexible geometries such as loops; flexibility was assessed by comparing Cα B‐factor values. This information is important for directing successful bipartite tetracysteine site designs. magnified image

Keywords:
Flexibility (engineering) Bipartite graph Intramolecular force Binding site Chemistry Nanotechnology Computer science Stereochemistry Materials science Biochemistry Theoretical computer science Mathematics

Metrics

26
Cited By
2.16
FWCI (Field Weighted Citation Impact)
17
Refs
0.86
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

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