首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >Pyridoxal-5'-phosphate-dependent enzymes involved in biotin biosynthesis: structure, reaction mechanism and inhibition.
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Pyridoxal-5'-phosphate-dependent enzymes involved in biotin biosynthesis: structure, reaction mechanism and inhibition.

机译:参与生物素生物合成的5'-磷酸吡rid醛依赖性酶:结构,反应机理和抑制作用。

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摘要

The four last steps of biotin biosynthesis, starting from pimeloyl-CoA, are conserved among all the biotin-producing microorganisms. Two enzymes of this pathway, the 8-amino-7-oxononanoate synthase (AONS) and the 7,8-diaminopelargonic acid aminotransferase (DAPA AT) are dependent on pyridoxal-5'-phosphate (PLP). This review summarizes our current understanding of the structure, reaction mechanism and inhibition on these two interesting enzymes. Mechanistic studies as well as the determination of the crystal structure of AONS have revealed a complex mechanism involving an acylation with inversion of configuration and a decarboxylation with retention of configuration. This reaction mechanism is shared by the homologous 5-aminolevulinate synthase and serine palmitoyltransferase. While the reaction catalyzed by DAPA AT is a classical PLP-dependent transamination, the inactivation of this enzyme by amiclenomycin, a natural antibiotic that is active against Mycobacterium tuberculosis, involves the irreversible formation of an adduct between PLP and amiclenomycin. Mechanistic and structural studies allowed the complete description of this unique inactivation mechanism. Several potent inhibitors of these two PLP-dependent enzymes have been prepared and might be useful as starting points for the design of herbicides or antibiotics. This article is part of a Special Issue entitled: Pyridoxal Phospate Enzymology.
机译:从庚二酰辅酶A开始的生物素生物合成的最后四个步骤在所有产生生物素的微生物中均得到保守。该途径的两种酶,即8-氨基-7-氧代壬酸合酶(AONS)和7,8-二氨基壬酸氨基转移酶(DAPA AT)依赖于吡ido醛5'-磷酸(PLP)。这篇综述总结了我们目前对这两种有趣的酶的结构,反应机理和抑制的理解。机理研究以及AONS晶体结构的确定揭示了一个复杂的机制,其中包括构型反转的酰化和构型保留的脱羧。该反应机制由同源的5-氨基乙酰丙酸酯合酶和丝氨酸棕榈酰转移酶共有。虽然DAPA AT催化的反应是经典的PLP依赖性转氨反应,但氨曲霉素(一种对结核分枝杆菌有活性的天然抗生素)使该酶失活涉及PLP和氨曲霉素之间不可逆地形成加合物。机械和结构研究使这种独特的灭活机制的完整描述。已经制备了这两种PLP依赖性酶的几种有效抑制剂,它们可能可用作设计除草剂或抗生素的起点。本文是《特刊:磷酸吡En醛酶学》特刊的一部分。

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