具有能与 PLP 分子形成希夫碱的氨基酸替代物 N174k 的 Variovorax paradoxus 细菌的未知功能蛋白质

IF 0.6 4区 材料科学 Q4 CRYSTALLOGRAPHY Crystallography Reports Pub Date : 2025-02-16 DOI:10.1134/S1063774524602235
I. O. Ilyasov, M. E. Minyaev, T. V. Rakitina, A. K. Bakunova, V. O. Popov, E. Yu. Bezsudnova, K. M. Boyko
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引用次数: 0

摘要

依赖吡哆醛-5'-磷酸(PLP)的酶是存在于几乎所有生物体内的最丰富的酶之一,它们在生物体内发挥着 150 多种不同的催化功能。根据三维结构,这些酶可分为七种(I-VII)不同的折叠类型。在这些酶中,辅助因子以希夫碱的形式与保守的活性位点赖氨酸残基结合。最近,我们发现了一种来自Variovorax paradoxus细菌的蛋白质(VAPA),它属于折叠类型IV,在结构上与转氨酶非常相似。它在折叠型 IV 转氨酶催化赖氨酸的位置上含有一个天冬酰胺残基,因此不能与 PLP 形成希夫碱,也不具有转氨酶活性。本研究获得了一个 N174K 取代的 VAPA 蛋白单点突变体,并测定了其三维结构。对所得数据的分析表明,引入的突变恢复了 VAPA 与辅助因子形成希夫碱的能力。
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Protein of Unknown Function from Bacterium Variovorax paradoxus with the Amino Acid Substitution N174k Capable of Forming Schiff Base with a PLP Molecule

Pyridoxal 5'-phosphate (PLP)-dependent enzymes are among the most abundant enzymes present in nearly all organisms, where they perform more than 150 different catalytic functions. Based on the three-dimensional structures, these enzymes are classified into seven (I–VII) different fold types. In these enzymes, the cofactor is bound as a Schiff base with the conserved active-site lysine residue. Recently, we have discovered the protein from the bacterium Variovorax paradoxus (VAPA), which belongs to the fold type IV and has a significant structural similarity to transaminases. It contains an asparagine residue at the position of catalytic lysine in fold type IV transaminases and, consequently, it cannot form a Schiff base with PLP and does not have aminotransferase activity. In this study, a single-point mutant of the VAPA protein with the N174K substitution was obtained and its three-dimensional structure was determined. An analysis of the obtained data showed that the introduced mutation restores the ability of  VAPA to form a Schiff base with the cofactor.

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来源期刊
Crystallography Reports
Crystallography Reports 化学-晶体学
CiteScore
1.10
自引率
28.60%
发文量
96
审稿时长
4-8 weeks
期刊介绍: Crystallography Reports is a journal that publishes original articles short communications, and reviews on various aspects of crystallography: diffraction and scattering of X-rays, electrons, and neutrons, determination of crystal structure of inorganic and organic substances, including proteins and other biological substances; UV-VIS and IR spectroscopy; growth, imperfect structure and physical properties of crystals; thin films, liquid crystals, nanomaterials, partially disordered systems, and the methods of studies.
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