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电子转移至细胞色素b5 - 细胞色素c复合物的激光闪光光解研究。

Laser flash photolysis studies of electron transfer to the cytochrome b5-cytochrome c complex.

作者信息

Meyer T E, Rivera M, Walker F A, Mauk M R, Mauk A G, Cusanovich M A, Tollin G

机构信息

Department of Biochemistry, University of Arizona, Tucson 85721.

出版信息

Biochemistry. 1993 Jan 19;32(2):622-7. doi: 10.1021/bi00053a030.

Abstract

Rate constants for electron transfer in the complex between recombinant rat mitochondrial outer membrane cytochrome b5 or the tryptic fragment of bovine liver cytochrome b5 and horse mitochondrial cytochrome c were measured by laser flash photolysis of 5-deazariboflavin-EDTA solutions. When an excess of cytochrome b5 was titrated with increasing amounts of cytochrome c at low ionic strength and electron transfer was initiated by a laser flash, both proteins were rapidly reduced by deazariboflavin semiquinone. The initial photoreduction was followed by a slower second-order reduction of b5 complexed oxidized cytochrome c by free reduced cytochrome b5. At an 8:1 ratio of cytochromes b5 to c, the pseudo-first-order rate constant for reduction of complexed cytochrome c increased 3-5-fold between ionic strengths of 5 and 40 mM, and then dropped precipitously at higher ionic strengths. The ionic strength dependent increase in rate constant is likely to be due to relief of steric hindrance via rearrangement of cytochrome c in the complex. The reaction rate showed no sign of saturation at any ionic strength, indicating a first-order rate constant greater than 10(4) s-1 within a transient ternary protein complex; i.e., interprotein electron transfer approaches the largest values previously reported for the stable binary protein complex (approximately 4 x 10(5) s-1). Our results emphasize the flexibility of electron-transfer protein complexes, which had previously been modeled in a single conformation with specific salt bridges. It appears that a variety of orientations can exist within such protein-protein complexes and that the population of conformations changes with ionic strength.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过对5-脱氮核黄素-EDTA溶液进行激光闪光光解,测量了重组大鼠线粒体外膜细胞色素b5或牛肝细胞色素b5的胰蛋白酶片段与马线粒体细胞色素c之间复合物中电子转移的速率常数。在低离子强度下,当用不断增加的细胞色素c滴定过量的细胞色素b5,并通过激光闪光引发电子转移时,两种蛋白质都会被脱氮核黄素半醌迅速还原。最初的光还原之后是游离还原型细胞色素b5对与氧化型细胞色素c结合的b5进行较慢的二级还原。在细胞色素b5与c的比例为8:1时,复合细胞色素c还原的伪一级速率常数在离子强度为5至40 mM之间增加了3至5倍,然后在更高的离子强度下急剧下降。速率常数随离子强度的增加可能是由于复合物中细胞色素c的重排缓解了空间位阻。在任何离子强度下,反应速率均未显示出饱和迹象,表明在瞬态三元蛋白质复合物中一级速率常数大于10(4) s-1;即,蛋白质间电子转移接近先前报道的稳定二元蛋白质复合物的最大值(约4 x 10(5) s-1)。我们的结果强调了电子转移蛋白质复合物的灵活性,此前这些复合物被建模为具有特定盐桥的单一构象。似乎在这种蛋白质-蛋白质复合物中可以存在多种取向,并且构象群体随离子强度而变化。(摘要截断于250字)

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