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Levels of epsilon an essential replication subunit of Escherichia coli DNA polymerase III are controlled by heat shock proteins.

机译:ε是大肠杆菌DNA聚合酶III的重要复制亚基其水平受热激蛋白控制。

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摘要

In Escherichia coli, epsilon, the proofreading subunit of DNA polymerase III, is encoded by dnaQ. A random search for mutants that affect the expression of dnaQ revealed that mutations in the genes encoding the heat shock proteins (HSPs) DnaK, DnaJ, and GrpE result in dramatic decreases in the cellular levels of epsilon. dnaQ is arranged in an overlapping divergent transcriptional unit with rnhA, which encodes RNase H1, and mutations in the same HSPs also reduced the apparent levels of RNase H1. The HSPs had only small effects on transcriptional fusions to these genes; thus, it is likely that they operate primarily at the protein level. Since survival and mutagenesis after DNA damage are affected by epsilon and RNase H1, HSPs may have a broad influence on various aspects of DNA replication and repair.
机译:在大肠杆菌中,epsilon是DNA聚合酶III的校对亚基,由dnaQ编码。随机搜索影响dnaQ表达的突变体,发现编码热激蛋白(HSP)DnaK,DnaJ和GrpE的基因中的突变导致ε细胞水平显着下降。 dnaQ与rnhA排列在一个重叠的发散转录单位中,后者编码RNase H1,并且同一HSP中的突变也降低了RNase H1的表观水平。 HSP对这些基因的转录融合影响很小。因此,它们很可能主要在蛋白质水平上起作用。由于DNA损伤后的存活和诱变会受到epsilon和RNase H1的影响,因此HSP可能会对DNA复制和修复的各个方面产生广泛影响。

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