细胞色素c诱导ph依赖性囊泡融合。

A Walter, D Margolis, R Mohan, R Blumenthal
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引用次数: 27

摘要

研究了细胞色素c和含有血红素的呼吸链组分细胞色素c诱导含有0-50 mol %负电荷脂质的磷脂酰胆碱(PC)小单层囊泡融合的能力。这两种分子介导了磷脂酰丝氨酸(PS):PC 1:1囊泡的融合,这是通过荧光脂质探针之间的能量转移变化以浓度和pH依赖的方式测量的,尽管细胞色素c比细胞色素c更弱,并且在更有限的pH范围内相互作用。最大融合发生在pH 3,远低于蛋白质中包含的19个赖氨酸基团的pKa (pI = 10.5)。在PC中含有50 mol %的心磷脂(CL)、磷脂酰甘油(PG)和磷脂酰肌醇(PI)的囊泡也有类似的pH依赖性,但表观pKa值有所不同。在没有囊泡的情况下,apocytochrome c的二级结构在该pH范围内保持不变,但在带负电荷的囊泡存在的情况下,多肽经历了明显的构象变化,从随机线圈到α -螺旋。通过比较聚赖氨酸和apocytochrome c诱导融合的pH依赖性,我们得出结论,pH依赖性来源于囊泡和apocytochrome c上净电荷的变化。在融合难以察觉的条件下,聚合也会发生。随着PS摩尔比的增加,融合程度增加。Apocytochrome c确实诱导了一些仅由PC组成的囊泡融合,在pH为4时效果最大。细胞色素c的生物合成涉及细胞色素c从细胞质穿过线粒体外膜到线粒体外空间的易位,在那里有血红素基团附着。细胞色素c诱导含有ps和仅含有pc的囊泡融合的能力可能反映了与其生物易位有关的蛋白/膜相互作用的特征。
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Apocytochrome c induces pH-dependent vesicle fusion.

The ability of apocytochrome c and the heme containing respiratory chain component, cytochrome c, to induce fusion of phosphatidylcholine (PC) small unilamellar vesicles containing 0-50 mol % negatively charged lipids was examined. Both molecules mediated fusion of phosphatidylserine (PS):PC 1:1 vesicles as measured by energy transfer changes between fluorescent lipid probes in a concentration- and pH-dependent manner, although cytochrome c was less potent and interacted over a more limited pH range than the apocytochrome c. Maximal fusion occurred at pH 3, far below the pKa of the 19 lysine groups contained in the protein (pI = 10.5). A similar pH dependence was observed for vesicles containing 50 mol % cardiolipin (CL), phosphatidylglycerol (PG), and phosphatidylinositol (PI) in PC but the apparent pKa values varied somewhat. In the absence of vesicles, the secondary structure of apocytochrome c was unchanged over this pH range, but in the presence of negatively charged vesicles, the polypeptide underwent a marked conformational change from random coil to alpha-helix. By comparing the pH dependencies of fusion induced by poly-L-lysine and apocytochrome c, we concluded that the pH dependence derived from changes in the net charge on both the vesicles and apocytochrome c. Aggregation could occur under conditions where fusion was imperceptible. Fusion increased with increasing mole ratio of PS. Apocytochrome c did induce some fusion of vesicles composed only of PC with a maximum effect at pH 4. Biosynthesis of cytochrome c involves translocation of apocytochrome c from the cytosol across the outer mitochondrial membrane to the outer mitochondrial space where the heme group is attached. The ability of apocytochrome c to induce fusion of both PS-containing and PC-only vesicles may reflect characteristics of protein/membrane interaction that pertain to its biological translocation.

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