Schlattner Uwe, Kay Laurence, Tokarska-Schlattner Malgorzata
Laboratory of Fundamental and Applied Bioenergetics (LBFA), and SFR Environmental and Systems Biology (BEeSy), University Grenoble Alpes, Grenoble, France.
Inserm, U1055, Grenoble, France.
Subcell Biochem. 2018;87:365-408. doi: 10.1007/978-981-10-7757-9_13.
Isoforms of creatine kinase (CK) generate and use phosphocreatine, a concentrated and highly diffusible cellular "high energy" intermediate, for the main purpose of energy buffering and transfer in order to maintain cellular energy homeostasis. The mitochondrial CK isoform (mtCK) localizes to the mitochondrial intermembrane and cristae space, where it assembles into peripherally membrane-bound, large cuboidal homooctamers. These are part of proteolipid complexes wherein mtCK directly interacts with cardiolipin and other anionic phospholipids, as well as with the VDAC channel in the outer membrane. This leads to a stabilization and cross-linking of inner and outer mitochondrial membrane, forming so-called contact sites. Also the adenine nucleotide translocator of the inner membrane can be recruited into these proteolipid complexes, probably mediated by cardiolipin. The complexes have functions mainly in energy transfer to the cytosol and stimulation of oxidative phosphorylation, but also in restraining formation of reactive oxygen species and apoptosis. In vitro evidence indicates a putative role of mtCK in mitochondrial phospholipid distribution, and most recently a role in thermogenesis has been proposed. This review summarizes the essential structural and functional data of these mtCK complexes and describes in more detail the more recent advances in phospholipid interaction, thermogenesis, cancer and evolution of mtCK.
肌酸激酶(CK)的同工型生成并利用磷酸肌酸,磷酸肌酸是一种浓缩且高度可扩散的细胞“高能”中间体,其主要功能是进行能量缓冲和转移,以维持细胞能量稳态。线粒体CK同工型(mtCK)定位于线粒体内膜间隙和嵴间隙,在那里它组装成外周膜结合的大型立方体同八聚体。这些是蛋白脂质复合物的一部分,其中mtCK直接与心磷脂和其他阴离子磷脂相互作用,也与外膜中的电压依赖性阴离子通道相互作用。这导致线粒体内外膜的稳定和交联,形成所谓的接触位点。内膜的腺嘌呤核苷酸转位酶也可能被募集到这些蛋白脂质复合物中,可能是由心磷脂介导的。这些复合物的功能主要在于向细胞质传递能量和刺激氧化磷酸化,也在于抑制活性氧的形成和细胞凋亡。体外证据表明mtCK在线粒体磷脂分布中可能发挥作用,最近有人提出它在产热中也发挥作用。本综述总结了这些mtCK复合物的基本结构和功能数据,并更详细地描述了mtCK在磷脂相互作用、产热、癌症及进化方面的最新进展。