Barral J M, Bauer C C, Ortiz I, Epstein H F
Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030, USA.
J Cell Biol. 1998 Nov 30;143(5):1215-25. doi: 10.1083/jcb.143.5.1215.
The Caenorhabditis elegans unc-45 locus has been proposed to encode a protein machine for myosin assembly. The UNC-45 protein is predicted to contain an NH2-terminal domain with three tetratricopeptide repeat motifs, a unique central region, and a COOH-terminal domain homologous to CRO1 and She4p. CRO1 and She4p are fungal proteins required for the segregation of other molecules in budding, endocytosis, and septation. Three mutations that lead to temperature-sensitive (ts) alleles have been localized to conserved residues within the CRO1/She4p-like domain, and two lethal alleles were found to result from stop codon mutations in the central region that would prevent translation of the COOH-terminal domain. Electron microscopy shows that thick filament accumulation in vivo is decreased by approximately 50% in the CB286 ts mutant grown at the restrictive temperature. The thick filaments that assemble have abnormal structure. Immunofluorescence and immunoelectron microscopy show that myosins A and B are scrambled, in contrast to their assembly into distinct regions at the permissive temperature and in wild type. This abnormal structure correlates with the high degree of instability of the filaments in vitro as reflected by their extremely low yields and shortened lengths upon isolation. These results implicate the UNC-45 CRO1/She4p-like region in the assembly of myosin isoforms in C. elegans and suggest a possible common mechanism for the function of this UCS (UNC-45/CRO1/She4p) protein family.
秀丽隐杆线虫unc-45基因座被认为编码一种用于肌球蛋白组装的蛋白质机器。预测UNC-45蛋白包含一个具有三个四肽重复基序的NH2末端结构域、一个独特的中央区域以及一个与CRO1和She4p同源的COOH末端结构域。CRO1和She4p是真菌蛋白,在出芽、胞吞作用和隔膜形成过程中对其他分子的分离是必需的。导致温度敏感(ts)等位基因的三个突变已定位到CRO1/She4p样结构域内的保守残基上,并且发现两个致死等位基因是由中央区域的终止密码子突变导致的,这将阻止COOH末端结构域的翻译。电子显微镜显示,在限制温度下生长的CB286 ts突变体中,体内粗丝积累减少了约50%。组装的粗丝结构异常。免疫荧光和免疫电子显微镜显示,肌球蛋白A和B发生了混乱,这与它们在允许温度下和野生型中组装到不同区域的情况形成对比。这种异常结构与体外细丝的高度不稳定性相关,这体现在分离时它们极低的产量和缩短的长度上。这些结果表明UNC-45 CRO1/She4p样区域参与了秀丽隐杆线虫中肌球蛋白异构体的组装,并暗示了这个UCS(UNC-45/CRO1/She4p)蛋白家族功能的一种可能的共同机制。