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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Functional significance of some particular amino acid residues in Bombyx mori pyridoxal kinase
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Functional significance of some particular amino acid residues in Bombyx mori pyridoxal kinase

机译:一些特定的氨基酸的功能意义酸残基在家蚕吡哆醛激酶

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摘要

Pyridoxal kinase (PLK; EC 2.7.1.35) is a key enzyme for vitamin B _6 metabolism in animals. It catalyzes the ATP-dependent phosphorylation of pyridoxal, generating pyridoxal 5'-phosphate, an important cofactor for many enzymatic reactions. Bombyx mori PLK (BmPLK) is 10 or more residues shorter than mammalian PLKs, and some amino acid residues conserved in the PLKs from mammals are not maintained in the protein. Multiple sequence alignment suggested that amino acid residues Thr ~(47), Ile ~(54), Arg ~(88), Asn ~(121) and Glu ~(230) might play important roles in BmPLK. In this study, we used a site-directed specific mutagenesis approach to determine the functional significance of these particular amino acid residues in BmPLK. Our results demonstrated that the mutation of Asn ~(121) to Glu did not affect the catalytic function of BmPLK. The corresponding site-directed mutants of Thr ~(47) to Asn, Ile ~(54) to Phe, and Arg ~(88) to Ile displayed a decreased catalytic efficiency and an elevated Km value for substrate relative to the wild-type value, and no enzyme activity could be detected in mutant of Trp ~(230) to Glu. Circular dichroism analysis revealed that the mutation of Trp ~(230) to Glu resulted in mis-folding of the protein. Our results provided direct evidence that residue Trp ~(230) is crucial to maintain the structural and functional integrity of BmPLK. This study will add to the existing understanding of the characteristic of structure and function of BmPLK.
机译:吡哆醛激酶(PLK;维生素B _6代谢酶在动物。催化的ATP-dependent磷酸化吡哆醛、吡哆醛生成5 '磷酸,许多酶反应的重要辅助因子。家蚕PLK (BmPLK)是10或更多的残留短于哺乳动物plk,一些氨基酸残留plk从哺乳动物是守恒的不保持蛋白质。对齐表明氨基酸残基用力推~ (47), Ile ~ (54), Arg ~ (88), Asn ~(121)和Glu~(230)可能在BmPLK扮演重要角色。本研究中,我们使用一个定点具体诱变的方法来确定功能这些特定的氨基酸的重要性在BmPLK残留。Asn ~ (121) Glu的突变没有影响BmPLK的催化功能。相应的基因定点突变体刺~ (47)Asn, Ile ~(54)法和Ile Arg ~ (88)催化效率下降和显示基质相对于高架公里值野生型值,没有酶活性检测到突变的Glu ~(230)。二色性分析显示,突变的Trp ~ (230) Glu导致包膜蛋白质。残,Trp ~(230)维持是至关重要的的结构和功能完整性BmPLK。本研究将添加到现有的理解结构和功能的特点BmPLK。

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