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Mutations in the C-terminal fragment of DnaK affecting peptide binding.

机译:DnaK的C端片段中的突变会影响肽结合。

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摘要

Escherichia coli DnaK acts as a molecular chaperone through its ATP-regulated binding and release of polypeptide substrates. Overexpressing a C-terminal fragment (CTF) of DnaK (Gly-384 to Lys-638) containing the polypeptide substrate binding domain is lethal in wild-type E. coli. This dominant-negative phenotype may result from the nonproductive binding of CTF to cellular polypeptide targets of DnaK. Mutations affecting DnaK substrate binding were identified by selecting noncytotoxic CTF mutants followed by in vitro screening. The clustering of such mutations in the three-dimensional structure of CTF suggests the model that loops L1,2 and L4,5 form a rigid core structure critical for interactions with substrate.
机译:大肠杆菌DnaK通过其ATP调节的多肽底物的结合和释放而充当分子伴侣。在野生型大肠杆菌中,过表达含有多肽底物结合域的DnaK的C末端片段(CTF)(Gly-384至Lys-638)是致命的。这种显性阴性表型可能是由于CTF与DnaK细胞多肽靶标的非生产性结合所致。通过选择无细胞毒性的CTF突变体,然后进行体外筛选,鉴定出影响DnaK底物结合的突变。在CTF的三维结构中此类突变的聚类表明,环L1,2和L4,5形成的刚性核心结构对于与底物相互作用至关重要。

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