Matynia A, Mueller U, Ong N, Demeter J, Granger A L, Hinata K, Sazer S
Verna and Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030, USA.
Genetics. 1998 Apr;148(4):1799-811. doi: 10.1093/genetics/148.4.1799.
pim1-d1ts was previously identified in a visual screen for fission yeast mutants unable to complete the mitosis-to-interphase transition. pim1+ encodes the guanine nucleotide exchange factor (GEF) for the spi1 GTPase. Perturbations of this GTPase system by either mutation or overproduction of its regulatory proteins cause cells to arrest with postmitotic condensed chromosomes, an unreplicated genome, and a wide medial septum. The septation phenotype of pim1-d1ts was used as the basis for a more extensive screen for this novel class of sns (septated, not in S-phase) mutants. Seventeen mutants representing 14 complementation groups were isolated. Three strains, sns-A3, sns-A5, and sns-A6, representing two different alleles, are mutated in the pim1+ gene. Of the 13 non-pim1ts sns complementation groups, 11 showed genetic interactions with the spi1 GTPase system. The genes mutated in 10 sns strains were synthetically lethal with pim1-d1, and six sns strains were hypersensitive to overexpression of one or more of the known components of the spil GTPase system. Epistasis analysis places the action of the genes mutated in nine of these strains downstream of pim1+ and the action of one gene upstream of pim1+. Three strains, sns-A2, sns-B1, and sns-B9, showed genetic interaction with the spil GTPase system in every test performed. sns-B1 and sns-B9 are likely to identify downstream targets, whereas sns-A2 is likely to identify upstream regulators of the spi1 GTPase system that are required for the mitosis-to-interphase transition.
pim1-d1ts 先前是在对无法完成有丝分裂到间期转变的裂殖酵母突变体进行的视觉筛选中鉴定出来的。pim1+ 编码spi1 GTP酶的鸟嘌呤核苷酸交换因子(GEF)。通过其调节蛋白的突变或过量表达对该GTP酶系统进行干扰,会导致细胞停滞在有丝分裂后浓缩的染色体、未复制的基因组以及宽阔的中间隔膜阶段。pim1-d1ts 的隔膜形成表型被用作对这类新型sns(有隔膜,不在S期)突变体进行更广泛筛选的基础。分离出了代表14个互补群的17个突变体。代表两个不同等位基因的三个菌株,即sns-A3、sns-A5和sns-A6,在pim1+ 基因中发生了突变。在13个非pim1ts的sns互补群中,有11个与spi1 GTP酶系统表现出遗传相互作用。10个sns菌株中发生突变的基因与pim1-d1 是合成致死的,6个sns菌株对spi1 GTP酶系统一种或多种已知组分的过表达高度敏感。上位性分析表明,这些菌株中有9个发生突变的基因的作用在pim1+ 的下游,而一个基因的作用在pim1+ 的上游。在进行的每项测试中,三个菌株sns-A2、sns-B1和sns-B9都与spi1 GTP酶系统表现出遗传相互作用。sns-B1和sns-B9可能鉴定出下游靶点,而sns-A2可能鉴定出有丝分裂到间期转变所需的spi1 GTP酶系统的上游调节因子。