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降低RecA1202(Prtc)蛋白组成型共蛋白酶活性的recA突变:丝间缔合可能参与蛋白水解和重组活性。

recA mutations that reduce the constitutive coprotease activity of the RecA1202(Prtc) protein: possible involvement of interfilament association in proteolytic and recombination activities.

作者信息

Liu S K, Eisen J A, Hanawalt P C, Tessman I

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Bacteriol. 1993 Oct;175(20):6518-29. doi: 10.1128/jb.175.20.6518-6529.1993.

DOI:10.1128/jb.175.20.6518-6529.1993
PMID:8407828
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC206762/
Abstract

Twenty-eight recA mutants, isolated after spontaneous mutagenesis generated by the combined action of RecA1202(Prtc) and UmuDC proteins, were characterized and sequenced. The mutations are intragenic suppressors of the recA1202 allele and were detected by the reduced coprotease activity of the gene product. Twenty distinct mutation sites were found, among which two mutations, recA1620 (V-275-->D) and recA1631 (I-284-->N), were mapped in the C-terminal portion of the interfilament contact region (IFCR) in the RecA crystal. An interaction of this region with the part of the IFCR in which the recA1202 mutation (Q-184-->K) is mapped could occur only intermolecularly. Thus, altered IFCR and the likely resulting change in interfilament association appear to be important aspects of the formation of a constitutively active RecA coprotease. This observation is consistent with the filament-bundle theory (R. M. Story, I. T. Weber, and T. A. Steitz, Nature (London) 335:318-325, 1992). Furthermore, we found that among the 20 suppressor mutations, 3 missense mutations that lead to recombination-defective (Rec-) phenotypes also mapped in the IFCR, suggesting that the IFCR, with its putative function in interfilament association, is required for the recombinase activity of RecA. We propose that RecA-DNA complexes may form bundles analogous to the RecA bundles (lacking DNA) described by Story et al. and that these RecA-DNA bundles play a role in homologous recombination.

摘要

对通过RecA1202(Prtc)和UmuDC蛋白共同作用产生的自发诱变后分离得到的28个recA突变体进行了表征和测序。这些突变是recA1202等位基因的基因内抑制子,通过基因产物共蛋白酶活性的降低来检测。发现了20个不同的突变位点,其中两个突变,recA1620(V-275→D)和recA1631(I-284→N),定位在RecA晶体中丝间接触区域(IFCR)的C末端部分。该区域与recA1202突变(Q-184→K)所在的IFCR部分之间的相互作用可能仅发生在分子间。因此,改变的IFCR以及丝间缔合可能产生的变化似乎是组成型活性RecA共蛋白酶形成的重要方面。这一观察结果与丝束理论(R.M.Story、I.T.Weber和T.A.Steitz,《自然》(伦敦)335:318 - 325,1992)一致。此外,我们发现在20个抑制突变中,导致重组缺陷(Rec-)表型的3个错义突变也定位在IFCR中,表明具有丝间缔合假定功能的IFCR是RecA重组酶活性所必需的。我们提出RecA-DNA复合物可能形成类似于Story等人描述的RecA束(不含DNA)的束,并且这些RecA-DNA束在同源重组中起作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e39/206762/d7cdd7ed5dac/jbacter00062-0154-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e39/206762/d7cdd7ed5dac/jbacter00062-0154-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e39/206762/d7cdd7ed5dac/jbacter00062-0154-a.jpg

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ISOLATION AND CHARACTERIZATION OF RECOMBINATION-DEFICIENT MUTANTS OF ESCHERICHIA COLI K12.大肠杆菌K12重组缺陷突变体的分离与鉴定
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