首页> 外文期刊>FEBS Letters >Competitive inhibition analysis of the enzyme‐substrate interaction in the carboxy‐terminal processing of the precursor D1 protein of photosystem II reaction center using substituted oligopeptides
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Competitive inhibition analysis of the enzyme‐substrate interaction in the carboxy‐terminal processing of the precursor D1 protein of photosystem II reaction center using substituted oligopeptides

机译:使用取代的寡肽对光系统II反应中心前体D1蛋白的羧基末端处理中的酶-底物相互作用进行竞争性抑制分析

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>A clear parallelism was demonstrated between the efficiency as substrate of the substituted oligopeptides corresponding to the carboxy-terminal (C-terminal) sequence of the precursor D1 protein (pD1) in the in vitro enzymatic assay and their competitive inhibitory capacity toward the proteolytic C-terminal processing of the full-length pD1 integrated in the intact photosystem II complex embedded in the thylakoid membrane of Scenedesmus obliquus LF-1 mutant, as shown e.g. by the influence of L343A, A345G and A345V substitutions and the effect of C-terminal fragments. This suggests that the basic mechanism for substrate recognition by the processing protease elucidated in the enzymatic analysis using synthetic oligopeptides is also effective in vivo, although it can sometimes be difficult to detect the consequence of amino acid substitution in the integrated systems.
机译:在体外酶法测定中,证明与前体D1蛋白(pD1)的羧基末端(C-末端)序列相对应的取代寡肽作为底物的效率与它们对多肽的竞争抑制能力之间存在明显的平行性。完整pD1的蛋白水解C末端加工,该完整pD1整合在完整的光系统II复合物中,该复合物嵌在 LF-1突变体类囊体膜中,受L343A,A345G和A345V取代的影响以及C末端片段的影响。这表明通过使用合成的寡肽进行的酶促分析中阐明的加工蛋白酶识别底物的基本机制在体内也是有效的,尽管有时可能很难检测到集成系统中氨基酸取代的结果。

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