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NDPK-D与含心磷脂膜的相互作用:结构基础及其对线粒体生理学的影响。

Interaction of NDPK-D with cardiolipin-containing membranes: Structural basis and implications for mitochondrial physiology.

作者信息

Lacombe Marie-Lise, Tokarska-Schlattner Malgorzata, Epand Raquel F, Boissan Mathieu, Epand Richard M, Schlattner Uwe

机构信息

INSERM UMRS, UMPC Université Paris, France.

出版信息

Biochimie. 2009 Jun;91(6):779-83. doi: 10.1016/j.biochi.2009.02.006. Epub 2009 Feb 28.

Abstract

Nucleoside diphosphate kinases (NDPKs/Nm23), responsible for intracellular di- and tri-phosphonucleoside homeostasis, play multi-faceted roles in cellular energetic, signaling, proliferation, differentiation and tumor invasion. The mitochondrial NDPK-D, the NME4 gene product, is a peripheral protein of the inner membrane. Several new aspects of the interaction of NDPK-D with the inner mitochondrial membrane have been recently characterized. Surface plasmon resonance analysis using recombinant NDPK-D and different phospholipid liposomes showed that NDPK-D interacts electrostatically with anionic phospholipids, with highest affinity observed for cardiolipin, a phospholipid located mostly in the mitochondrial inner membrane. Mutation of the central arginine (R90) in a surface exposed cationic RRK motif unique to NDPK-D strongly reduced phospholipid interaction in vitro and in vivo. Stable expression of NDPK-D proteins in HeLa cells naturally almost devoid of this isoform revealed a tight functional coupling of NDPK-D with oxidative phosphorylation that depends on the membrane-bound state of the enzyme. Owing to its symmetrical hexameric structure exposing membrane binding motifs on two opposite sides, NDPK-D could bridge liposomes containing anionic phospholipids and promote lipid transfer between them. In vivo, NDPK-D could induce intermembrane contacts and facilitate lipid movements between mitochondrial membranes. Most of these properties are reminiscent to those of the mitochondrial creatine kinase. We review here the common properties of both kinases and we discuss their potential roles in mitochondrial functions such as energy production, apoptosis and mitochondrial dynamics.

摘要

核苷二磷酸激酶(NDPKs/Nm23)负责细胞内二磷酸核苷和三磷酸核苷的稳态,在细胞能量代谢、信号传导、增殖、分化及肿瘤侵袭中发挥多方面作用。线粒体NDPK-D是NME4基因的产物,是线粒体内膜的外周蛋白。最近已对NDPK-D与线粒体内膜相互作用的几个新方面进行了表征。使用重组NDPK-D和不同磷脂脂质体的表面等离子体共振分析表明,NDPK-D与阴离子磷脂发生静电相互作用,对心磷脂(一种主要位于线粒体内膜的磷脂)的亲和力最高。NDPK-D特有的表面暴露阳离子RRK基序中的中心精氨酸(R90)突变在体外和体内均强烈降低了磷脂相互作用。在天然几乎缺乏这种异构体的HeLa细胞中稳定表达NDPK-D蛋白,揭示了NDPK-D与氧化磷酸化之间紧密的功能偶联,这取决于该酶的膜结合状态。由于其对称的六聚体结构在两个相对侧暴露膜结合基序,NDPK-D可以桥接含有阴离子磷脂的脂质体并促进它们之间的脂质转移。在体内,NDPK-D可以诱导膜间接触并促进线粒体膜之间的脂质移动。这些特性大多让人联想到线粒体肌酸激酶的特性。我们在此综述了这两种激酶的共同特性,并讨论了它们在能量产生、细胞凋亡和线粒体动力学等线粒体功能中的潜在作用。

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