Dumont M E, Schlichter J B, Cardillo T S, Hayes M K, Bethlendy G, Sherman F
Department of Biochemistry, University of Rochester School of Medicine and Dentistry, New York 14642.
Mol Cell Biol. 1993 Oct;13(10):6442-51. doi: 10.1128/mcb.13.10.6442-6451.1993.
The gene CYC2 from the yeast Saccharomyces cerevisiae was previously shown to affect levels of mitochondrial cytochrome c by acting at a posttranslational step in cytochrome c biosynthesis. We report here the cloning and identification of the CYC2 gene product as a protein involved in import of cytochrome c into mitochondria. CYC2 encodes a 168-amino-acid open reading frame with at least two potential transmembrane segments. Antibodies against a synthetic peptide corresponding to the carboxyl terminus of the predicted sequence were raised. These antibodies recognize multiple bands on immunoblots of mitochondrial extracts. The intensities of these bands vary according to the gene dosage of CYC2 in various isogenic strains. Immunoblotting of subcellular fractions suggests that the CYC2 gene product is a mitochondrial protein. Deletion of CYC2 leads to accumulation of apocytochrome c in the cytoplasm. However, strains with deletions of this gene still import low levels of cytochrome c into mitochondria. The effects of cyc2 mutations are more pronounced in rho- strains than in rho+ strains, even though rho- strains that are CYC2+ contain normal levels of holocytochrome c. cyc2 mutations affect levels of iso-1-cytochrome c more than they do levels of iso-2-cytochrome c, apparently because of the greater susceptibility of apo-iso-1-cytochrome c to degradation in the cytoplasm. We propose that CYC2 encodes a factor that increases the efficiency of cytochrome c import into mitochondria.
先前的研究表明,来自酿酒酵母的CYC2基因通过在细胞色素c生物合成的翻译后步骤发挥作用,影响线粒体细胞色素c的水平。我们在此报告CYC2基因产物的克隆和鉴定,它是一种参与细胞色素c导入线粒体的蛋白质。CYC2编码一个168个氨基酸的开放阅读框,带有至少两个潜在的跨膜区段。制备了针对与预测序列羧基末端对应的合成肽的抗体。这些抗体在免疫印迹中线粒体提取物上识别多条带。这些条带的强度根据不同同基因菌株中CYC2的基因剂量而变化。亚细胞组分的免疫印迹表明CYC2基因产物是一种线粒体蛋白。CYC2的缺失导致脱辅基细胞色素c在细胞质中积累。然而,该基因缺失的菌株仍能将低水平的细胞色素c导入线粒体。cyc2突变在rho-菌株中的影响比在rho+菌株中更明显,尽管CYC2+的rho-菌株含有正常水平的全细胞色素c。cyc2突变对iso-1-细胞色素c水平的影响比对iso-2-细胞色素c水平的影响更大,显然是因为脱辅基iso-1-细胞色素c在细胞质中更易降解。我们提出CYC2编码一种提高细胞色素c导入线粒体效率的因子。