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金鱼 PKZ 的 Zalpha 结构域可以与负超螺旋中的 d(GC)(n)结合。

The Zalpha domain of PKZ from Carassius auratus can bind to d(GC)(n) in negative supercoils.

机构信息

Department of Bioscience, College of Life Science and Food Engineering, Nanchang University, Nanchang 330031, China.

出版信息

Fish Shellfish Immunol. 2010 May-Jun;28(5-6):783-8. doi: 10.1016/j.fsi.2010.01.021. Epub 2010 Feb 6.

Abstract

PKZ was the most recently discovered member of eIF2alpha kinase family in fish. CaPKZ, the first identified fish PKZ, possessed a conserved eIF2alpha kinase catalytic domain in C-terminal and two Z-DNA binding domains (Zalpha) in N-terminal. The Zalpha of CaPKZ closely resembled that of other Z-DNA binding proteins: ADAR1, DLM-1, and E3L. In order to understand more about the function of CaPKZ, we expressed and purified three constructed peptides of CaPKZ (P(Zalpha)): P(Zalpha1Zalpha2), P(Zalpha1Zalpha1) and P(Zalpha2)(Zalpha2). Moreover, most of the plasmids containing d(GC)(n) inserts were maintained in the Z-conformation, as confirmed by using inhibition of methylation experiments and anti-Z-DNA antibody. Gel mobility shift assays were then used to examine the affinity of these P(Zalpha) to the recombinant plasmids. Meanwhile, a competition experiment using P(Zalpha1Zalpha2) and anti-Z-DNA antibody was performed. The results revealed that P(Zalpha1Zalpha2) and P(Zalpha1Zalpha1) were able to bind to the recombinant plasmids with high affinity, whereas P(Zalpha2)(Zalpha2) could not bind to it. In addition, dimerization of P(Zalpha1Zalpha2) indicated the function unit of Zalpha of CaPKZ would be a dimer.

摘要

PKZ 是鱼类中最近发现的 eIF2alpha 激酶家族成员。CaPKZ 是第一个被鉴定的鱼类 PKZ,在 C 端具有保守的 eIF2alpha 激酶催化结构域,在 N 端具有两个 Z-DNA 结合结构域(Zalpha)。CaPKZ 的 Zalpha 与其他 Z-DNA 结合蛋白(ADAR1、DLM-1 和 E3L)非常相似。为了更深入地了解 CaPKZ 的功能,我们表达并纯化了 CaPKZ 的三个构建肽(P(Zalpha)):P(Zalpha1Zalpha2)、P(Zalpha1Zalpha1)和 P(Zalpha2)(Zalpha2)。此外,大多数含有 d(GC)(n) 插入的质粒都以 Z 构象存在,这通过使用抑制甲基化实验和抗 Z-DNA 抗体来证实。凝胶迁移率变动分析随后用于检查这些 P(Zalpha)与重组质粒的亲和力。同时,进行了使用 P(Zalpha1Zalpha2)和抗 Z-DNA 抗体的竞争实验。结果表明,P(Zalpha1Zalpha2)和 P(Zalpha1Zalpha1)能够与重组质粒高亲和力结合,而 P(Zalpha2)(Zalpha2)则不能结合。此外,P(Zalpha1Zalpha2)的二聚化表明 CaPKZ 的 Zalpha 的功能单位将是二聚体。

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