Penney M, Wilkinson C, Wallace M, Javerzat J P, Ferrell K, Seeger M, Dubiel W, McKay S, Allshire R, Gordon C
MRC Human Genetics Unit Western General Hospital, Edinburgh EH4 2XU Scotland, United Kingdom.
J Biol Chem. 1998 Sep 11;273(37):23938-45. doi: 10.1074/jbc.273.37.23938.
We have isolated a fission yeast mutant, mts5-1, in a screen for mutations that confer both methyl 2-benzimidazolecarbamate resistance (MBCR) and temperature sensitivity (ts) on Schizosaccharomyces pombe. This screen has previously isolated mutations in the 26 S proteasome subunits Mts2, Mts3, and Mts4. We show that the mutation in the mts5-1 strain occurs in the pad1(+) gene. pad1(+) was originally isolated on a multicopy plasmid that was capable of conferring staurosporine resistance on a wild type strain. mts5-1/pad1-1 has a similar phenotype to 26 S proteasome mutants previously isolated in the same screen and we show that Pad1 interacts genetically with two of these subunits, Mts3 and Mts4. In this study we describe the identification of Pad1 as a subunit of the 26 S proteasome in fission yeast.
我们在一项筛选中分离出了一种裂殖酵母突变体mts5-1,该筛选旨在寻找能使粟酒裂殖酵母同时具有对2-氨基苯并咪唑甲酸盐(MBC)的抗性(MBCR)和温度敏感性(ts)的突变。此前该筛选已分离出26S蛋白酶体亚基Mts2、Mts3和Mts4中的突变。我们发现mts5-1菌株中的突变发生在pad1(+)基因中。pad1(+)最初是在一个多拷贝质粒上分离出来的,该质粒能够赋予野生型菌株对星形孢菌素的抗性。mts5-1/pad1-1具有与之前在同一筛选中分离出的26S蛋白酶体突变体相似的表型,并且我们证明Pad1与其中两个亚基Mts3和Mts4存在遗传相互作用。在本研究中我们描述了将Pad1鉴定为裂殖酵母中26S蛋白酶体一个亚基的过程。