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The determination of functional amino acid residues for F TraI relaxase activity and specificity.

机译:F TraI松弛酶活性和特异性的功能性氨基酸残基的测定。

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摘要

TraI is an essential protein for bacterial conjugation, a process whereby a plasmid directs its transfer from a donor to a recipient bacterium. The TraI proteins from the plasmids F and R100 have two functions, a single-stranded DNA endonuclease (or “relaxase”) activity and a helicase activity. Based on limited proteolysis experiments of F TraI, constructs that encode the relaxase domains from the two TraI homologues (TraI36) were generated. Two mutagenesis-based strategies were undertaken to identify functionally important amino acid residues of the F TraI relaxase domain. The first strategy was alanine scanning mutagenesis to determine the importance of thirteen amino acids conserved among F-like relaxases. Several amino acids have been identified that are involved in binding to the plasmid origin of transfer, and two histidines have been identified as participants in the ssDNA cleavage reaction. The second strategy was aimed at identifying the residues of F and R100 TraI36, which are 91% identical in primary sequence, that are responsible for the two-base difference in the DNA binding specificity of these two homologues. Amino acids 193 and 201 were identified as the major specificity determinants of the differential ssDNA binding and cleavage activities of F and R100 TraI36. The studies presented in this dissertation increase our understanding of protein-ssDNA binding interactions and specificities, and form the beginning of an active site map for the F TraI relaxase.
机译:TraI是细菌结合的必需蛋白,该过程是质粒指导其从供体细菌转移到受体细菌的过程。来自质粒F和R100的TraI蛋白具有两种功能,单链DNA核酸内切酶(或“松弛酶”)活性和解旋酶活性。基于F TraI的有限蛋白水解实验,生成了编码来自两个TraI同源物(TraI36)的松弛酶结构域的构建体。采取了两种基于诱变的策略来鉴定F TraI松弛酶结构域的功能上重要的氨基酸残基。第一种策略是丙氨酸扫描诱变,以确定F样松弛酶中保守的13个氨基酸的重要性。已经鉴定出几种与质粒转移起点结合的氨基酸,并且已鉴定出两种组氨酸是ssDNA切割反应的参与者。第二种策略旨在鉴定在一级序列中91%相同的F和R100 TraI36残基,它们是这两个同源物DNA结合特异性的两碱基差异的原因。氨基酸193和201被鉴定为F和R100 TraI36差异ssDNA结合和裂解活性的主要特异性决定因素。本文提出的研究增进了我们对蛋白质-ssDNA结合相互作用和特异性的理解,并形成了F TraI松弛酶活性位点图的开始。

著录项

  • 作者

    Harley, Matthew Jonathan.;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Chemistry Biochemistry.; Biology Molecular.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;分子遗传学;
  • 关键词

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