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首页> 外文期刊>Molecules >Bacterial Production, Characterization and Protein Modeling of a Novel Monofuctional Isoform of FAD Synthase in Humans: An Emergency Protein?
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Bacterial Production, Characterization and Protein Modeling of a Novel Monofuctional Isoform of FAD Synthase in Humans: An Emergency Protein?

机译:新型的FAD合酶单功能同工型在人类中的细菌生产,表征和蛋白质建模:一种应急蛋白质?

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FAD synthase (FADS, EC 2.7.7.2) is the last essential enzyme involved in the pathway of biosynthesis of Flavin cofactors starting from Riboflavin (Rf). Alternative splicing of the human FLAD1 gene generates different isoforms of the enzyme FAD synthase. Besides the well characterized isoform 1 and 2, other FADS isoforms with different catalytic domains have been detected, which are splice variants. We report the characterization of one of these novel isoforms, a 320 amino acid protein, consisting of the sole C-terminal 3′-phosphoadenosine 5′-phosphosulfate (PAPS) reductase domain (named FADS6). This isoform has been previously detected in Riboflavin-Responsive (RR-MADD) and Non-responsive Multiple Acyl-CoA Dehydrogenase Deficiency (MADD) patients with frameshift mutations of FLAD1 gene. To functionally characterize the hFADS6, it has been over-expressed in Escherichia coli and purified with a yield of 25 mg·L?1 of cell culture. The protein has a monomeric form, it binds FAD and is able to catalyze FAD synthesis (kcat about 2.8 min?1), as well as FAD pyrophosphorolysis in a strictly Mg2+-dependent manner. The synthesis of FAD is inhibited by HgCl2. The enzyme lacks the ability to hydrolyze FAD. It behaves similarly to PAPS. Combining threading and ab-initio strategy a 3D structural model for such isoform has been built. The relevance to human physio-pathology of this FADS isoform is discussed.
机译:FAD合酶(FADS,EC 2.7.7.2)是从核黄素(Rf)开始参与黄素辅因子生物合成途径的最后一种必需酶。人FLAD1基因的可变剪接产生了FAD合酶的不同同工型。除了特征明确的同工型1和2,还检测到其他具有不同催化结构域的FADS同工型,它们是剪接变体。我们报告了这些新颖的同工型,320个氨基酸的蛋白质,由唯一的C端3'-磷酸腺苷5'-磷酸硫酸盐(PAPS)还原酶域(称为FADS6)组成的表征。先前已在具有FLAD1基因移码突变的核黄素反应性(RR-MADD)和非反应性多酰基CoA脱氢酶缺乏症(MADD)患者中检测到这种同工型。为了在功能上表征hFADS6,已在大肠杆菌中过表达hFADS6,并以25 mg·L?1的细胞培养量对其进行了纯化。该蛋白质具有单体形式,它结合FAD并能够催化FAD合成(kcat约2.8 min?1),以及以严格的Mg2 +依赖性方式进行FAD焦磷酸解。 HgCl2抑制FAD的合成。该酶缺乏水解FAD的能力。它的行为类似于PAPS。结合线程和ab-initio策略,已为此类异构体建立了3D结构模型。讨论了该FADS同工型与人类生理病理学的相关性。

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