Pathak Ritu, Bogomolnaya Lydia M, Guo Jinbai, Polymenis Michael
Department of Biochemistry and Biophysics, Texas A&M University, 2128 TAMU, College Station, TX 77843, USA.
Curr Genet. 2005 Nov;48(5):300-9. doi: 10.1007/s00294-005-0030-5. Epub 2005 Nov 4.
KEM1 is a Saccharomyces cerevisiae gene, conserved in all eukaryotes, whose deletion leads to pleiotropic phenotypes. For the most part, these phenotypes are thought to arise from Kem1p's role in RNA turnover, because Kem1p is a major 5'-3' cytoplasmic exonuclease. For example, the exonuclease-dependent role of Kem1p is involved in the exit from mitosis, by degrading the mRNA of the mitotic cyclin CLB2. Here, we describe the identification of a KEM1 truncation, KEM1(1-975), that accelerated the G1 to S transition and initiation of DNA replication when over-expressed. Interestingly, although this truncated Kem1p lacked exonuclease activity, it could efficiently complement another function affected by the loss of KEM1, microtubule-dependent nuclear migration. Taken together, the results we report here suggest that Kem1p might have a previously unrecognized role at the G1 to S transition, but not through its exonuclease activity. Our findings also support the notion that Kem1p is a multifunctional protein with distinct and separable roles.
KEM1是一种在所有真核生物中都保守的酿酒酵母基因,其缺失会导致多效性表型。在很大程度上,这些表型被认为源于Kem1p在RNA周转中的作用,因为Kem1p是一种主要的5'-3'细胞质核酸外切酶。例如,Kem1p的核酸外切酶依赖性作用通过降解有丝分裂周期蛋白CLB2的mRNA参与有丝分裂的退出。在此,我们描述了一种KEM1截短体KEM1(1-975)的鉴定,当它过表达时会加速G1期到S期的转变以及DNA复制的起始。有趣的是,尽管这种截短的Kem1p缺乏核酸外切酶活性,但它能够有效地补充受KEM1缺失影响的另一项功能,即微管依赖性核迁移。综上所述,我们在此报告的结果表明,Kem1p可能在G1期到S期的转变中具有先前未被认识到的作用,但不是通过其核酸外切酶活性。我们的发现还支持了Kem1p是一种具有不同且可分离功能的多功能蛋白质这一观点。