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首页> 外文期刊>Journal of bacteriology >Thirty-Eight C-Terminal Amino Acids of the Coupling Protein TraD of the F-Like Conjugative Resistance Plasmid R1 Are Required and Sufficient To Confer Binding to the Substrate Selector Protein TraM
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Thirty-Eight C-Terminal Amino Acids of the Coupling Protein TraD of the F-Like Conjugative Resistance Plasmid R1 Are Required and Sufficient To Confer Binding to the Substrate Selector Protein TraM

机译:F类共轭抗性质粒R1的偶联蛋白TraD的38个C末端氨基酸是必需的,并且足以赋予与底物选择蛋白TraM的结合力

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Coupling proteins (CPs) are present in type IV secretion systems of plant, animal, and human pathogens and are essential for DNA transfer in bacterial conjugation systems. CPs connect the DNA-processing machinery to the mating pair-forming transfer apparatus. In this report we present in vitro and in vivo data that demonstrate specific binding of CP TraD of the IncFII R1 plasmid transfer system to relaxosomal protein TraM. With overlay assays and enzyme-linked immunosorbent assays we showed that a truncated version of TraD, termed TraD11 (ΔN155), interacted strongly with TraM. The apparent TraD11-TraM association constant was determined to be 2.6 × 107 liters/mol. Electrophoretic mobility shift assays showed that this variant of TraD also strongly bound to TraM when it was in complex with its target DNA. When 38 amino acids were additionally removed from the C terminus of TraD, no binding to TraM was observed. TraD15, comprising the 38 amino-acid-long C terminus of TraD, bound to TraM, indicating that the main TraM interaction domain resides in these 38 amino acids of TraD. TraD15 exerted a dominant negative effect on DNA transfer but not on phage infection by pilus-specific phage R17, indicating that TraM-TraD interaction is important for conjugative DNA transfer but not for phage infection. We also observed that TraD encoded by the closely related F factor bound to TraM encoded by the R1 plasmid. Our results thus provide evidence that substrate selection within the IncF plasmid group is based on TraM's capability to select the correct DNA molecule for transport and not on substrate selection by the CP.
机译:耦合蛋白(CP)存在于植物,动物和人类病原体的IV型分泌系统中,对于细菌结合系统中的DNA转移至关重要。 CP将DNA处理机器连接到形成配对的转移设备上。在本报告中,我们提供了体外和体内数据,这些数据证明了IncFII R1质粒转移系统的CP TraD与松弛体蛋白TraM的特异性结合。通过重叠测定和酶联免疫吸附测定,我们发现称为TraD11(ΔN155)的TraD的截短形式与TraM有很强的相互作用。确定TraD11-TraM的表观缔合常数为2.6×10 7 升/摩尔。电泳迁移率变动分析表明,当TraD的这种变异体与其目标DNA复杂时,它也能与TraM牢固结合。当从TraD的C末端另外去除38个氨基酸时,未观察到与TraM的结合。 TraD15包含与TraM结合的TraD的38个氨基酸长的C末端,表明主要的TraM相互作用域位于TraD的这38个氨基酸中。 TraD15对DNA转移起显性负作用,但对菌毛特异性噬菌体R17的噬菌体感染没有作用,这表明TraM-TraD相互作用对共轭DNA转移很重要,但对噬菌体感染并不重要。我们还观察到由密切相关的F因子编码的TraD与R1质粒编码的TraM结合。因此,我们的结果提供了证据,证明IncF质粒组内的底物选择是基于TraM选择正确的DNA分子进行转运的能力,而不是基于CP的底物选择。

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