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新型致吡哆醇(胺)5'-磷酸氧化酶依赖性癫痫相关致病性变异的特征。

Characterization of Novel Pathogenic Variants Causing Pyridox(am)ine 5'-Phosphate Oxidase-Dependent Epilepsy.

机构信息

Istituto di Biologia e Patologia Molecolari, Consiglio Nazionale delle Ricerche, 00185 Rome, Italy.

Dipartimento di Scienze Biochimiche "A. Rossi Fanelli", Sapienza Università di Roma, 00185 Rome, Italy.

出版信息

Int J Mol Sci. 2021 Nov 6;22(21):12013. doi: 10.3390/ijms222112013.

Abstract

Several variants of the enzyme pyridox(am)ine 5'-phosphate oxidase (PNPO), responsible for a rare form of vitamin B-dependent neonatal epileptic encephalopathy known as PNPO deficiency (PNPOD), have been reported. However, only a few of them have been characterised with respect to their structural and functional properties, despite the fact that the knowledge of how variants affect the enzyme may clarify the disease mechanism and improve treatment. Here, we report the characterisation of the catalytic, allosteric and structural properties of recombinantly expressed D33V, R161C, P213S, and E50K variants, among which D33V (present in approximately 10% of affected patients) is one of the more common variants responsible for PNPOD. The D33V and E50K variants have only mildly altered catalytic properties. In particular, the E50K variant, given that it has been found on the same chromosome with other known pathogenic variants, may be considered non-pathogenic. The P213S variant has lower thermal stability and reduced capability to bind the FMN cofactor. The variant involving Arg161 (R161C) largely decreases the affinity for the pyridoxine 5'-phosphate substrate and completely abolishes the allosteric feedback inhibition exerted by the pyridoxal 5'-phosphate product.

摘要

已报道几种吡哆醛(胺)5'-磷酸氧化酶(PNPO)的酶变体,该酶负责一种罕见的维生素 B 依赖性新生儿癫痫性脑病,称为 PNPO 缺乏症(PNPOD)。然而,尽管了解变体如何影响酶可能阐明疾病机制并改善治疗,但仅有少数变体的结构和功能特性得到了表征。在这里,我们报告了重组表达的 D33V、R161C、P213S 和 E50K 变体的催化、别构和结构特性的表征,其中 D33V(存在于约 10%的受影响患者中)是导致 PNPOD 的常见变体之一。D33V 和 E50K 变体仅略微改变了催化特性。特别是 E50K 变体,由于它与其他已知的致病性变体位于同一染色体上,因此可能被认为是非致病性的。涉及 Arg161(R161C)的变体极大地降低了对吡哆醇 5'-磷酸底物的亲和力,并完全消除了由吡哆醛 5'-磷酸产物施加的别构反馈抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70b1/8584306/57b3cebe46b1/ijms-22-12013-g001.jpg

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