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磷酸吡哆醛的伴侣作用及其对涉及维生素B6依赖性酶的罕见疾病的影响。

The chaperone role of the pyridoxal 5'-phosphate and its implications for rare diseases involving B6-dependent enzymes.

作者信息

Cellini Barbara, Montioli Riccardo, Oppici Elisa, Astegno Alessandra, Voltattorni Carla Borri

机构信息

Department of Life Sciences and Reproduction, Section of Biological Chemistry, University of Verona, Strada Le Grazie 8 37134 Verona, Italy.

Department of Life Sciences and Reproduction, Section of Biological Chemistry, University of Verona, Strada Le Grazie 8 37134 Verona, Italy.

出版信息

Clin Biochem. 2014 Feb;47(3):158-65. doi: 10.1016/j.clinbiochem.2013.11.021. Epub 2013 Dec 16.

Abstract

The biologically active form of the B6 vitamers is pyridoxal 5'-phosphate (PLP), which plays a coenzymatic role in several distinct enzymatic activities ranging from the synthesis, interconversion and degradation of amino acids to the replenishment of one-carbon units, synthesis and degradation of biogenic amines, synthesis of tetrapyrrolic compounds and metabolism of amino-sugars. In the catalytic process of PLP-dependent enzymes, the substrate amino acid forms a Schiff base with PLP and the electrophilicity of the PLP pyridine ring plays important roles in the subsequent catalytic steps. While the essential role of PLP in the acquisition of biological activity of many proteins is long recognized, the finding that some PLP-enzymes require the coenzyme for refolding in vitro points to an additional role of PLP as a chaperone in the folding process. Mutations in the genes encoding PLP-enzymes are causative of several rare inherited diseases. Patients affected by some of these diseases (AADC deficiency, cystathionuria, homocystinuria, gyrate atrophy, primary hyperoxaluria type 1, xanthurenic aciduria, X-linked sideroblastic anaemia) can benefit, although at different degrees, from the administration of pyridoxine, a PLP precursor. The effect of the coenzyme is not limited to mutations that affect the enzyme-coenzyme interaction, but also to those that cause folding defects, reinforcing the idea that PLP could play a chaperone role and improve the folding efficiency of misfolded variants. In this review, recent biochemical and cell biology studies highlighting the chaperoning activity of the coenzyme on folding-defective variants of PLP-enzymes associated with rare diseases are presented and discussed.

摘要

维生素B6各变体的生物活性形式是磷酸吡哆醛(PLP),它在多种不同的酶促活性中发挥辅酶作用,这些活性包括氨基酸的合成、相互转化和降解、一碳单位的补充、生物胺的合成与降解、四吡咯化合物的合成以及氨基糖的代谢。在PLP依赖性酶的催化过程中,底物氨基酸与PLP形成席夫碱,PLP吡啶环的亲电性在随后的催化步骤中起重要作用。虽然PLP在许多蛋白质获得生物活性方面的重要作用早已为人所知,但一些PLP酶在体外重折叠需要辅酶这一发现表明,PLP在折叠过程中还具有伴侣蛋白的额外作用。编码PLP酶的基因突变是几种罕见遗传性疾病的病因。受其中一些疾病(芳香族氨基酸脱羧酶缺乏症、胱硫醚尿症、高胱氨酸尿症、回旋状萎缩、1型原发性高草酸尿症、黄尿酸尿症、X连锁铁粒幼细胞贫血)影响的患者,尽管程度不同,但服用吡哆醇(一种PLP前体)会有所受益。辅酶的作用不仅限于影响酶 - 辅酶相互作用的突变,还包括那些导致折叠缺陷的突变,这强化了PLP可能发挥伴侣蛋白作用并提高错误折叠变体折叠效率的观点。在这篇综述中, 我们展示并讨论了最近的生物化学和细胞生物学研究,这些研究突出了辅酶对与罕见疾病相关的PLP酶折叠缺陷变体的伴侣活性。

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