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酵母蛋白激酶CK2α突变体的催化活性

Catalytic activity of mutants of yeast protein kinase CK2alpha.

作者信息

Sajnaga Ewa, Kubiński Konrad, Szyszka Ryszard

机构信息

Department of Molecular Biology, Environmental Protection Institute, The John Paul II Catholic University of Lublin, Lublin, Poland.

出版信息

Acta Biochim Pol. 2008;55(4):767-76. Epub 2008 Nov 17.

PMID:19015772
Abstract

Yeast CK2 is a highly conserved member of the protein kinase CGMC subfamily composed of two catalytic (alpha and alpha') and two regulatory (beta and beta') subunits. The amino-acid sequences of both catalytic subunits are only 60% homologous. Modelling of the tertiary structure of the CK2alpha displays additional alpha-helical structures not present in the CK2alpha' subunit, connecting the ATP-binding loop with the catalytic and activation loops. Deletion of this part causes drastic structural and enzymatic changes of the protein (CK2alpha(Delta91-128)) with characteristics similar to yeast CK2alpha' (low sensitivity to salt, heparin and spermine). Additionally, the deletion causes an over 5-fold decrease of the binding affinity for ATP and ATP-competitive inhibitors (TBBt and TBBz). The structural basis for TBBt and TBBz selectivity is provided by the hydrophobic pocket adjacent to the ATP/GTP binding site, which is smaller in CK2 than in the majority of other protein kinases. The importance of hydrophobic interactions in the binding of specific inhibitors was investigated here by mutational analysis of CK2alpha residues whose side chains contribute to reducing the size of the hydrophobic pocket. Site-directed mutagenesis was used to replace Val67 and Ile213 by Ala. The kinetic properties of the single mutants CK2alpha(Val67Ala) and CK2alpha(Ile213Ala), and the double mutant CK2(Val67Ala Ile213Ala) were studied with respect to ATP, and both inhibitors TBBt and TBBz. The K(m) values for ATP did not change or were very close to those of the parental kinase. In contrast, all CK2alpha mutants analysed displayed higher K(i) values towards the inhibitors (10 to 12-fold higher with TBBt and 3 to 6-fold with TBBt) comparing to recombinant wild-type CK2alpha.

摘要

酵母CK2是蛋白激酶CGMC亚家族中高度保守的成员,由两个催化亚基(α和α')和两个调节亚基(β和β')组成。两个催化亚基的氨基酸序列同源性仅为60%。CK2α三级结构的建模显示出CK2α'亚基中不存在的额外α-螺旋结构,该结构将ATP结合环与催化环和激活环相连。删除这部分会导致蛋白质(CK2α(Δ91 - 128))发生剧烈的结构和酶学变化,其特征类似于酵母CK2α'(对盐、肝素和精胺的敏感性低)。此外,删除导致对ATP和ATP竞争性抑制剂(TBBt和TBBz)的结合亲和力下降超过5倍。与大多数其他蛋白激酶相比,CK2中ATP/GTP结合位点附近的疏水口袋较小,这为TBBt和TBBz的选择性提供了结构基础。本文通过对CK2α残基进行突变分析来研究疏水相互作用在特定抑制剂结合中的重要性,这些残基的侧链有助于减小疏水口袋的大小。采用定点诱变将Val67和Ile213替换为Ala。研究了单突变体CK2α(Val67Ala)和CK2α(Ile213Ala)以及双突变体CK2(Val67Ala Ile213Ala)相对于ATP以及两种抑制剂TBBt和TBBz的动力学性质。ATP的K(m)值没有变化或与亲本激酶的值非常接近。相比之下,与重组野生型CK2α相比,所有分析的CK2α突变体对抑制剂的K(i)值都更高(TBBt高10至12倍;TBBz高3至6倍)。

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