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纯化后的人源SUV3p在构象改变时表现出多底物解旋活性。

Purified human SUV3p exhibits multiple-substrate unwinding activity upon conformational change.

作者信息

Shu Zhanyong, Vijayakumar Sangeetha, Chen Chi-Fen, Chen Phang-Lang, Lee Wen-Hwa

机构信息

Department of Biological Chemistry, College of Medicine, University of California, Irvine, California 92697, USA.

出版信息

Biochemistry. 2004 Apr 27;43(16):4781-90. doi: 10.1021/bi0356449.

Abstract

Suv3 of Saccharomyces cerevisiae has been classified as a mitochondrial RNA helicase. However, the helicase domain in both yeast and human SUV3 varies considerably from the typical RNA helicase motifs. To investigate its enzymatic activities, a homogeneously purified preparation of SUV3 is required. Expression of a processed form of human SUV3 carrying an N-terminal deletion of 46 amino acids (SUV3DeltaN46) in a yeast suv3 null mutant, which otherwise fails to grow in a nonfermentable carbon source and forms petite colonies in glucose medium, rescues the null phenotype. Through a five-step chromatographic procedure, an 83 kDa SUV3DeltaN46 protein (SUV3-83) and a partially degraded 70 kDa product (SUV3-70) containing amino acids 68-685 were purified to homogeneity. Single- or double-stranded DNA and RNA stimulated ATPase activity of both proteins. SUV3-70, which retains core catalytic domains, can bind and unwind multiple duplex substrates of RNA and DNA with a 5'-3' directionality over a wide range of pH, while SUV3-83 has helicase activity at only acidic pH. ATP, but not nonhydrolyzable ATP, is essential for the unwinding activity, suggesting the requirement of the energy derived from ATP hydrolysis. Consistent with this notion, suv3 mutants containing alanine (A) or arginine (R) substitutions at the conserved lysine residue in the ATP binding site (K213) lost ATPase activity and also failed to unwind the substrates. Importantly, circular dichroism (CD) spectral analysis showed that SUV3-83, at pH 5.0, adopts a conformation similar to that of SUV3-70, suggesting a conformational change in SUV3-83 is required for its helicase activity. The physiological relevance of the multiple-substrate helicase activity of human SUV3 is discussed.

摘要

酿酒酵母的Suv3已被归类为线粒体RNA解旋酶。然而,酵母和人类SUV3中的解旋酶结构域与典型的RNA解旋酶基序有很大差异。为了研究其酶活性,需要一种纯化的SUV3制剂。在酵母suv3缺失突变体中表达携带46个氨基酸N端缺失的人SUV3加工形式(SUV3DeltaN46),否则该突变体在非发酵碳源中无法生长,并在葡萄糖培养基中形成小菌落,可挽救缺失表型。通过五步色谱法,将83 kDa的SUV3DeltaN46蛋白(SUV3-83)和含有氨基酸68-685的部分降解的70 kDa产物(SUV3-70)纯化至同质。单链或双链DNA和RNA刺激了这两种蛋白的ATP酶活性。保留核心催化结构域的SUV3-70可以在很宽的pH范围内以5'-3'方向性结合并解开多种RNA和DNA双链底物,而SUV3-83仅在酸性pH下具有解旋酶活性。ATP而非不可水解的ATP对于解旋活性至关重要,这表明需要ATP水解产生的能量。与此观点一致,在ATP结合位点(K213)的保守赖氨酸残基处含有丙氨酸(A)或精氨酸(R)替代的suv3突变体失去了ATP酶活性,也无法解开底物。重要的是,圆二色性(CD)光谱分析表明,在pH 5.0时,SUV3-83采用与SUV3-70相似的构象,这表明SUV3-83的构象变化是其解旋酶活性所必需的。本文讨论了人SUV3多底物解旋酶活性的生理相关性。

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