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利用诱变和分子建模设计III型磷脂酰肌醇4-激酶的耐药等位基因

Design of drug-resistant alleles of type-III phosphatidylinositol 4-kinases using mutagenesis and molecular modeling.

作者信息

Balla Andras, Tuymetova Galina, Toth Balazs, Szentpetery Zsofia, Zhao Xiaohang, Knight Zachary A, Shokat Kevan, Steinbach Peter J, Balla Tamas

机构信息

Section on Molecular Signal Transduction, Center for Developmental Neuroscience, NICHD, National Institutes of Health, Bethesda, Maryland 20892-4510, USA.

出版信息

Biochemistry. 2008 Feb 12;47(6):1599-607. doi: 10.1021/bi7017927. Epub 2008 Jan 19.

Abstract

Molecular modeling and site directed mutagenesis were used to analyze the structural features determining the unique inhibitor sensitivities of type-III phosphatidylinositol 4-kinase enzymes (PI4Ks). Mutation of a highly conserved Tyr residue that provides the bottom of the hydrophobic pocket for ATP yielded a PI4KIIIbeta enzyme that showed greatly reduced wortmannin sensitivity and was catalytically still active. Similar substitutions were not tolerated in the type-IIIalpha enzyme rendering it catalytically inactive. Two conserved Cys residues located in the active site of PI4KIIIalpha were found responsible for the high sensitivity of this enzyme to the oxidizing agent, phenylarsine oxide. Mutation of one of these Cys residues reduced the phenylarsine oxide sensitivity of the enzyme to the same level observed with the PI4KIIIbeta protein. In search of inhibitors that would discriminate between the closely related PI4KIIIalpha and -IIIbeta enzymes, the PI3Kgamma inhibitor, PIK93, was found to inhibit PI4KIIIbeta with significantly greater potency than PI4KIIIalpha. These studies should aid development of subtype-specific inhibitors of type-III PI4Ks and help to better understand the significance of localized PtdIns4P production by the various PI4Ks isoforms in specific cellular compartments.

摘要

利用分子建模和定点诱变技术分析决定III型磷脂酰肌醇4激酶(PI4Ks)独特抑制剂敏感性的结构特征。为ATP提供疏水口袋底部的一个高度保守的Tyr残基发生突变,产生了一种PI4KIIIβ酶,其渥曼青霉素敏感性大大降低,但仍具有催化活性。IIIα型酶不能耐受类似的取代,使其失去催化活性。发现位于PI4KIIIα活性位点的两个保守Cys残基是该酶对氧化剂苯砷氧化物高度敏感的原因。其中一个Cys残基发生突变后,该酶对苯砷氧化物的敏感性降低至与PI4KIIIβ蛋白相同的水平。为了寻找能够区分密切相关的PI4KIIIα和-IIIβ酶的抑制剂,发现PI3Kγ抑制剂PIK93对PI4KIIIβ的抑制效力明显高于PI4KIIIα。这些研究应有助于开发III型PI4Ks的亚型特异性抑制剂,并有助于更好地理解不同PI4Ks同工型在特定细胞区室中产生局部磷脂酰肌醇4磷酸(PtdIns4P)的意义。

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