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一个新的裂殖酵母必需基因pad1+正向调控依赖pap1(+)的转录,并与染色体结构的维持有关。

A novel essential fission yeast gene pad1+ positively regulates pap1(+)-dependent transcription and is implicated in the maintenance of chromosome structure.

作者信息

Shimanuki M, Saka Y, Yanagida M, Toda T

机构信息

Department of Biophysics, Faculty of Science, Kyoto University, Japan.

出版信息

J Cell Sci. 1995 Feb;108 ( Pt 2):569-79. doi: 10.1242/jcs.108.2.569.

Abstract

Fission yeast pap1+ gene encodes an AP-1-like transcription factor, whose overexpression can confer resistance to staurosporine, a protein kinase inhibitor. We have previously identified a target gene (p25) for pap1+, and shown that, crm1+, which is required for maintenance of higher order chromosome structure, negatively regulates pap1-dependent transcription. In this study, we have characterized a novel gene, pad1+, which was isolated as a multicopy plasmid capable of conferring staurosporine-resistance. We showed that high copy pad1+ induces transcriptional activation of the p25 gene and that the induction by pad1+ is dependent on the pap1+ gene. Furthermore, a cis-element analysis of the 5'-region of the p25 gene showed that two elements (an AP-1 site and a 14 bp palindrome sequence) where pap1 binds in vitro is essential for the induction by pad1+. These results indicate that pad1 can positively regulate pap1-dependent transcription. Through an electromobility shift assay we showed that overexpression of pad1+ is not capable of enhancing the DNA-binding activity of pap1 directly. The pad1+ gene encodes a 35 kDa protein that has significant identity (68%) to Caenorhabditis elegans F37A4.5, and is also similar to mouse Mov34 and human C6.1A. Gene disruption experiments have demonstrated that pad1+ is essential for viability. A disruption mutant of pad1+ obtained after spore germination exhibited an elongated cell body with abberantly folded chromosomes. A mitotic plasmid loss experiment also produced similar cells having an abnormal chromosome structure. These suggest that pad1+ may play an important role in higher order chromosome structure. Taken concurrently with our previous results, two essential genes pad1+ and crm1+ regulate pap1-dependent transcription; pad1+ and crm1+ are positive and negative regulators, respectively.

摘要

裂殖酵母pap1+基因编码一种AP-1样转录因子,其过表达可赋予对蛋白激酶抑制剂星形孢菌素的抗性。我们之前已鉴定出pap1+的一个靶基因(p25),并表明维持高阶染色体结构所需的crm1+对pap1依赖性转录起负调控作用。在本研究中,我们鉴定了一个新基因pad1+,它是作为一种能够赋予星形孢菌素抗性的多拷贝质粒分离得到的。我们发现高拷贝的pad1+可诱导p25基因的转录激活,且pad1+的诱导作用依赖于pap1+基因。此外,对p25基因5'区域的顺式元件分析表明,pap1在体外结合的两个元件(一个AP-1位点和一个14 bp的回文序列)对于pad1+的诱导作用至关重要。这些结果表明pad1可正向调控pap1依赖性转录。通过电泳迁移率变动分析,我们发现pad1+的过表达不能直接增强pap1的DNA结合活性。pad1+基因编码一种35 kDa的蛋白质,它与秀丽隐杆线虫的F37A4.5具有显著的同源性(68%),并且也与小鼠的Mov34和人类的C6.1A相似。基因敲除实验表明pad1+对细胞活力至关重要。孢子萌发后获得的pad1+敲除突变体表现出细胞体延长且染色体折叠异常。有丝分裂质粒丢失实验也产生了具有异常染色体结构的类似细胞。这些表明pad1+可能在高阶染色体结构中起重要作用。结合我们之前的结果来看,两个必需基因pad1+和crm1+调节pap1依赖性转录;pad1+和crm1+分别是正调控因子和负调控因子。

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