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The biosynthesis of the molybdenum cofactors in Escherichia coli

机译:大肠杆菌中钼辅因子的生物合成

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摘要

The biosynthesis of the molybdenum cofactor (Moco) is highly conserved among all kingdoms of life. In all molybdoenzymes containing Moco, the molybdenum atom is coordinated to a dithiolene group present in the pterin-based 6-alkyl side chain of molybdopterin (MPT). In general, the biosynthesis of Moco can be divided into four steps in in bacteria: (i) the starting point is the formation of the cyclic pyranopterin monophosphate (cPMP) from 5 '-GTP, (ii) in the second step the two sulfur atoms are inserted into cPMP leading to the formation of MPT, (iii) in the third step the molybdenum atom is inserted into MPT to form Moco and (iv) in the fourth step bis-Mo-MPT is formed and an additional modification of Moco is possible with the attachment of a nucleotide (CMP or GMP) to the phosphate group of MPT, forming the dinucleotide variants of Moco. This review presents an update on the well-characterized Moco biosynthesis in the model organism Escherichia coli including novel discoveries from the recent years.
机译:钼辅因子(MoCo)的生物合成在所有王国之间高度保守。在含有MOCO的所有钼酶中,钼原子配位,其在钼醇(MPT)的翼状基6-烷基侧链中存在的二硫胺基。通常,MOCO的生物合成可以分为细菌中的四个步骤:(i)起始点是在第二步中形成的循环吡喃基替替林单磷酸酯(CPMP)的形成两步中的两个硫将原子插入CPMP,导致MPT的形成,(III)在第三步中,将钼原子插入MPT中以形成MOCO和(IV)在第四步骤BIS-MO-MPT中形成,并形成莫氏的另外修饰。通过将核苷酸(CMP或GMP)附着在MPT的磷酸盐基团中,形成MOCO的二核苷酸变体。本综述提出了在模型生物体大肠杆菌中的良好特征的MoCo生物合成的更新,包括近年来的新发现。

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