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C末端赖氨酸决定肌节线粒体肌酸激酶的磷脂相互作用。

C-terminal lysines determine phospholipid interaction of sarcomeric mitochondrial creatine kinase.

作者信息

Schlattner Uwe, Gehring Florian, Vernoux Nathalie, Tokarska-Schlattner Malgorzata, Neumann Dietbert, Marcillat Olivier, Vial Christian, Wallimann Theo

机构信息

Institute of Cell Biology, Swiss Federal Institute of Technology (ETH) Zürich, Hönggerberg, CH-8093 Zürich, Switzerland.

出版信息

J Biol Chem. 2004 Jun 4;279(23):24334-42. doi: 10.1074/jbc.M314158200. Epub 2004 Mar 25.

Abstract

High affinity interaction between octameric mitochondrial creatine kinase (MtCK) and the phospholipid cardiolipin in the inner mitochondrial membrane plays an important role in metabolite channeling between MtCK and inner membrane adenylate translocator, which itself is tightly bound to cardiolipin. Three C-terminal basic residues revealed as putative cardiolipin anchors in the x-ray structures of MtCK and corresponding to lysines in human sarcomeric MtCK (sMtCK) were exchanged by in vitro mutagenesis (K369A/E, K379Q/A/E, K380Q/A/E) to yield double and triple mutants. sMtCK proteins were bacterially expressed, purified to homogeneity, and verified for structural integrity by enzymatic activity, gel filtration chromatography, and CD spectroscopy. Interaction with cardiolipin and other acidic phospholipids was quantitatively analyzed by light scattering, surface plasmon resonance, and fluorescence spectroscopy. All mutant sMtCKs showed a strong decrease in vesicle cross-linking, membrane affinity, binding capacity, membrane ordering capability, and binding-induced changes in protein structure as compared with wild type. These effects did not depend on the nature of the replacing amino acid but on the number of exchanged lysines. They were moderate for Lys-379/Lys-380 double mutants but pronounced for triple mutants, with a 30-fold lower membrane affinity and an entire lack of alterations in protein structure compared with wild-type sMtCK. However, even triple mutants partially maintained an increased order of cardiolipin-containing membranes. Thus, the three C-terminal lysines determine high affinity sMtCK/cardiolipin interaction and its effects on MtCK structure, whereas low level binding and some effect on membrane fluidity depend on other structural components. These results are discussed in regard to MtCK microcompartments and evolution.

摘要

八聚体线粒体肌酸激酶(MtCK)与线粒体内膜中的磷脂心磷脂之间的高亲和力相互作用,在MtCK与内膜腺苷酸转位酶之间的代谢物通道形成中起重要作用,而腺苷酸转位酶本身与心磷脂紧密结合。通过体外诱变(K369A/E、K379Q/A/E、K380Q/A/E)交换了在MtCK的X射线结构中显示为假定的心磷脂锚定且对应于人类肌节MtCK(sMtCK)中赖氨酸的三个C末端碱性残基,以产生双突变体和三突变体。sMtCK蛋白通过细菌表达,纯化至同质,并通过酶活性、凝胶过滤色谱和圆二色光谱验证其结构完整性。通过光散射、表面等离子体共振和荧光光谱定量分析与心磷脂和其他酸性磷脂的相互作用。与野生型相比,所有突变型sMtCK在囊泡交联、膜亲和力、结合能力、膜有序能力以及结合诱导的蛋白质结构变化方面均表现出强烈下降。这些效应不取决于取代氨基酸的性质,而是取决于交换的赖氨酸数量。对于Lys-379/Lys-380双突变体,这些效应适中,但对于三突变体则很明显,与野生型sMtCK相比,膜亲和力低30倍,并且蛋白质结构完全没有变化。然而,即使是三突变体也部分维持了含心磷脂膜的有序性增加。因此,三个C末端赖氨酸决定了高亲和力的sMtCK/心磷脂相互作用及其对MtCK结构的影响,而低水平结合和对膜流动性的一些影响则取决于其他结构成分。针对MtCK微区室和进化对这些结果进行了讨论。

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