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Evidence that the MIF2 gene of Saccharomyces cerevisiae encodes a centromere protein with homology to the mammalian centromere protein CENP-C.

机译:酿酒酵母的MIF2基因编码一种着丝粒蛋白的证据该着丝粒蛋白与哺乳动物着丝粒蛋白CENP-C具有同源性。

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摘要

The MIF2 gene of Saccharomyces cerevisiae has been implicated in mitosis. Here we provide genetic evidence that MIF2 encodes a centromere protein. Specifically, we found that mutations in MIF2 stabilize dicentric minichromosomes and confer high instability (i.e., a synthetic acentric phenotype) to chromosomes that bear a cis-acting mutation in element I of the yeast centromeric DNA (CDEI). Similarly, we observed synthetic phenotypes between mutations in MIF2 and trans-acting mutations in three known yeast centromere protein genes-CEP1/CBF1/CPF1, NDC10/CBF2, and CEP3/CBF3B. In addition, the mif2 temperature-sensitive phenotype can be partially rescued by increased dosage of CEP1. Synthetic lethal interactions between a cep1 null mutation and mutations in either NDC10 or CEP3 were also detected. Taken together, these data suggest that the Mif2 protein interacts with Cep1p at the centromere and that the yeast centromere indeed exists as a higher order protein-DNA complex. The Mif2 and Cep1 proteins contain motifs of known transcription factors, suggesting that assembly of the yeast centromere is analogous to that of eukaryotic enhancers and origins of replication. We also show that the predicted Mif2 protein shares two short regions of homology with the mammalian centromere Ag CENP-C and that two temperature-sensitive mutations in MIF2 lie within these regions. These results provide evidence for structural conservation between yeast and mammalian centromeres.
机译:酿酒酵母的MIF2基因已牵连有丝分裂。在这里,我们提供了MIF2编码着丝粒蛋白的遗传证据。具体而言,我们发现MIF2中的突变稳定了双着丝粒微型染色体,并赋予在酵母着丝粒DNA(CDEI)的元件I中带有顺式作用突变的染色体高度不稳定性(即合成的无着丝粒表型)。同样,我们观察到了MIF2突变与三个已知酵母着丝粒蛋白基因CEP1 / CBF1 / CPF1,NDC10 / CBF2和CEP3 / CBF3B的反式突变之间的合成表型。此外,通过增加CEP1的剂量可以部分挽救mif2温度敏感性表型。还检测到cep1无效突变与NDC10或CEP3中的突变之间的合成致死相互作用。综上所述,这些数据表明,Mif2蛋白与着丝粒处的Cep1p相互作用,并且酵母着丝粒确实以更高阶的蛋白质-DNA复合物的形式存在。 Mif2和Cep1蛋白包含已知转录因子的基序,表明酵母着丝粒的组装类似于真核增强子的组装和复制起点。我们还显示,预测的Mif2蛋白与哺乳动物着丝粒Ag CENP-C共有两个短同源性区域,并且MIF2中的两个温度敏感突变位于这些区域内。这些结果为酵母和哺乳动物着丝粒之间的结构保守性提供了证据。

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