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线粒体肌酸激酶八聚体的膜结合及脂质囊泡交联动力学

Membrane-binding and lipid vesicle cross-linking kinetics of the mitochondrial creatine kinase octamer.

作者信息

Stachowiak O, Dolder M, Wallimann T

机构信息

Institute for Cell Biology, Swiss Federal Institute of Technology, Zürich, Switzerland.

出版信息

Biochemistry. 1996 Dec 3;35(48):15522-8. doi: 10.1021/bi961838v.

Abstract

Mitochondrial creatine kinase (Mi-CK; EC 2.7.3.2) is a positively charged enzyme located between the mitochondrial inner and outer membrane as well as along the cristae membranes. The octameric form of Mi-CK is able to cross-link membranes to form contact sites. The process of Mi-CK membrane binding and Mi-CK-induced cross-linking of model membrane vesicles containing different amounts of cardiolipin (CL) was investigated in vitro. First, the direct binding of octameric Mi-CK to immobilized lipid vesicles containing cardiolipin was monitored by plasmon resonance (BiaCore). The analysis of the pseudo-first-order on- and off-rate constants indicates that there are two binding sites with different affinity for Mi-CK on the membrane. The association equilibrium constants obtained at 25 degrees C were 813.7 (for 100% CL) and 343.6 (for 16% CL), respectively, for the high-affinity binding mode. Second, the Mi-CK-induced vesicle cross-linking kinetics were analyzed by fixed-angle light scattering. Only octameric Mi-CK induced bridged vesicle/protein complexes, whereas dimeric Mi-CK failed to induce vesicle cross-linking. For vesicles containing 100% cardiolipin, the pseudo-first-order association rate constant was 2.55 x 10(-3) s-1, while for membranes containing 16% cardiolipin and 84% PC a constant of 6.25 x 10(-3) s-1 was found. The examined kinetic properties of the system suggest a two-step model for Mi-CK-induced vesicle cross-linking which consists of a fast binding step of the enzyme to the membrane, followed by a remarkably slower cross-linking reaction between Mi-CK-covered vesicles. The data obtained by in vitro biophysical methods agree with earlier experiments done with mitoplasts and isolated mitochondrial membranes and explain the in vivo accumulation of Mi-CK at contact sites between the inner and outer mitochondrial membrane and the formation of Mi-CK-rich intramitochondrial inclusions observed in creatine-depleted animals as well as in patients with mitochondrial cytopathies.

摘要

线粒体肌酸激酶(Mi-CK;EC 2.7.3.2)是一种带正电荷的酶,位于线粒体内外膜之间以及嵴膜上。Mi-CK的八聚体形式能够使膜交联形成接触位点。体外研究了Mi-CK与含有不同量心磷脂(CL)的模型膜囊泡的膜结合过程以及Mi-CK诱导的膜囊泡交联过程。首先,通过表面等离子体共振(BiaCore)监测八聚体Mi-CK与固定化的心磷脂脂质囊泡的直接结合。对伪一级结合和解离速率常数的分析表明,膜上存在两个对Mi-CK具有不同亲和力的结合位点。在25℃下获得的高亲和力结合模式的缔合平衡常数分别为813.7(对于100%CL)和343.6(对于16%CL)。其次,通过固定角度光散射分析Mi-CK诱导的囊泡交联动力学。只有八聚体Mi-CK能诱导形成桥接的囊泡/蛋白质复合物,而二聚体Mi-CK不能诱导囊泡交联。对于含有100%心磷脂的囊泡,伪一级缔合速率常数为2.55×10⁻³ s⁻¹,而对于含有16%心磷脂和84%磷脂酰胆碱(PC)的膜,该常数为6.25×10⁻³ s⁻¹。该系统的动力学特性研究表明,Mi-CK诱导囊泡交联的过程为两步模型,包括酶与膜的快速结合步骤,随后是被Mi-CK覆盖的囊泡之间显著较慢的交联反应。体外生物物理方法获得的数据与早期对线粒体嵴和分离的线粒体膜所做的实验结果一致,并解释了在肌酸缺乏的动物以及线粒体细胞病患者体内观察到的Mi-CK在线粒体内外膜接触位点的积累以及富含Mi-CK的线粒体内包涵体的形成。

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