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首页> 外文期刊>The Journal of biological chemistry >Key Role of Two Terminal Domains in the Bidirectional Polymerization of FtsA Protein
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Key Role of Two Terminal Domains in the Bidirectional Polymerization of FtsA Protein

机译:两个终端在FTSA蛋白双向聚合中的两个终端的关键作用

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The effect of two different truncations involving either the 1C domain or the simultaneous absence of the S12–13 β-strands of the FtsA protein from Streptococcus pneumoniae, located at opposite terminal sides in the molecular structure, suggests that they are essential for ATP-dependent polymerization. These two truncated proteins are not able to polymerize themselves but can be incorporated to some extent into the FtsA+ polymers during the assembling process. Consequently, they block the growth of the FtsA+ polymers and slow down the polymerization rate. The combined action of the two truncated proteins produces an additive effect on the inhibition of FtsA+ polymerization, indicating that each truncation affects a different interaction site within the FtsA molecule.
机译:两个不同截短涉及1C结构域或同时不存在来自链球菌的FTSA蛋白的S12-13β-链的效果,位于分子结构的相对末端侧面,表明它们对于ATP依赖性至关重要聚合。这两个截短的蛋白质不能在组装过程中一定程度地掺入FTSA +聚合物中。因此,它们阻断了FTSA +聚合物的生长并减慢了聚合速率。两个截短的蛋白的组合作用产生对抑制FTSA +聚合的添加效果,表明每个截短地影响FTSA分子内的不同相互作用位点。

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