Zhu G, Muller E G, Amacher S L, Northrop J L, Davis T N
Department of Biochemistry, University of Washington, Seattle 98195.
Mol Cell Biol. 1993 Mar;13(3):1779-87. doi: 10.1128/mcb.13.3.1779-1787.1993.
The cmd1-1 mutation of calmodulin causes temperature-sensitive growth in Saccharomyces cerevisiae. We have isolated a dosage-dependent suppressor of cmd1-1, designated HCM1. Twentyfold overexpression of HCM1 permits strains carrying cmd1-1 to grow at temperatures up to and including 34 degrees C but does not suppress the lethality of either cmd1-1 at higher temperatures or the deletion of CMD1. Thus, overexpression of HCM1 does not bypass the requirement for calmodulin but enhances the ability of the mutant calmodulin to function. HCM1 is not essential for growth, but deletion of HCM1 exacerbates the phenotype of a strain carrying cmd1-1. HCM1 is located on chromosome III, which was recently sequenced. Our results correct errors in the published DNA sequence. The putative polypeptide encoded by HCM1 is 564 amino acids long and has a predicted molecular weight of 63,622. Antisera prepared against Hcm1p detect a protein that is overproduced in yeast strains overexpressing HCM1 and has an apparent molecular mass of 65 kDa. Eighty-six amino acid residues in the N terminus of Hcm1p show 50% identity with a DNA-binding region of the fork head family of DNA-binding proteins. When fused to the DNA-binding domain of Gal4p, residues 139 to 511 of Hcm1p can act as a strong activator of transcription. However, overexpression of HCM1 does not affect the expression of calmodulin. Furthermore, Hcm1p does not bind to calmodulin in a gel overlay assay. Thus, overexpression of HCM1 enhances calmodulin function by an apparently indirect mechanism.
钙调蛋白的cmd1-1突变导致酿酒酵母出现温度敏感型生长。我们分离出了一种cmd1-1的剂量依赖性抑制因子,命名为HCM1。HCM1的20倍过表达使携带cmd1-1的菌株能够在高达34摄氏度(包括34摄氏度)的温度下生长,但不能抑制cmd1-1在更高温度下的致死性,也不能抑制CMD1缺失的致死性。因此,HCM1的过表达并未绕过对钙调蛋白的需求,而是增强了突变钙调蛋白的功能。HCM1对生长不是必需的,但缺失HCM1会加剧携带cmd1-1菌株的表型。HCM1位于第三条染色体上,该染色体最近已完成测序。我们的结果纠正了已发表DNA序列中的错误。HCM1编码的推定多肽长564个氨基酸,预测分子量为63,622。针对Hcm1p制备的抗血清检测到一种在过表达HCM1的酵母菌株中过量产生的蛋白质,其表观分子量为65 kDa。Hcm1p N端的86个氨基酸残基与叉头家族DNA结合蛋白的一个DNA结合区域有50%的同源性。当与Gal4p的DNA结合结构域融合时,Hcm1p的139至511位残基可作为一种强大的转录激活因子。然而,HCM1的过表达并不影响钙调蛋白的表达。此外,在凝胶覆盖试验中,Hcm1p不与钙调蛋白结合。因此,HCM1的过表达通过一种明显间接的机制增强了钙调蛋白的功能。