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Microbial biotin protein ligases aid in understanding holocarboxylase synthetase deficiency.

机译:微生物生物素蛋白连接酶有助于理解全羧化酶合成酶的缺乏。

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摘要

The attachment of biotin onto the biotin-dependent enzymes is catalysed by biotin protein ligase (BPL), also known as holocarboxylase synthase HCS in mammals. Mammals contain five biotin-enzymes that participate in a number of important metabolic pathways such as fatty acid biogenesis, gluconeogenesis and amino acid catabolism. All mammalian biotin-enzymes are post-translationally biotinylated, and therefore activated, through the action of a single HCS. Substrate recognition by BPLs occurs through conserved structural cues that govern the specificity of biotinylation. Defects in biotin metabolism, including HCS, give rise to multiple carboxylase deficiency (MCD). Here we review the literature on this important enzyme. In particular, we focus on the new information that has been learned about BPL's from a number of recently published protein structures. Through molecular modelling studies insights into the structural basis of HCS deficiency in MCD are discussed.
机译:生物素到生物素依赖性酶的附着是由生物素蛋白连接酶(BPL)催化的,在哺乳动物中也称为全羧化酶合酶HCS。哺乳动物含有五种生物素酶,它们参与许多重要的代谢途径,例如脂肪酸生物发生,糖异生和氨基酸分解代谢。通过单个HCS的作用,所有哺乳动物生物素酶都经过翻译后生物素化,因此被激活。 BPL对底物的识别是通过控制生物素化特异性的保守结构线索来实现的。生物素代谢(包括HCS)中的缺陷会导致多种羧化酶缺乏症(MCD)。在这里,我们回顾有关这种重要酶的文献。特别是,我们关注从最近发布的许多蛋白质结构中学到的有关BPL的新信息。通过分子建模研究,探讨了MCD中HCS缺乏的结构基础。

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