Asakawa Kazuhide, Toh-e Akio
Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Hongo, Tokyo 113-0033, Japan.
Genetics. 2002 Dec;162(4):1545-56. doi: 10.1093/genetics/162.4.1545.
A subgroup of the karyopherin beta (also called importin beta) protein that includes budding yeast Kap104 and human transportin/karyopherin beta2 is reported to function as a receptor for the transport of mRNA-binding proteins into the nucleus. We identified KAP104 as a responsible gene for a suppressor mutation of cdc15-2. We found that the kap104-E604K mutation suppressed the temperature-sensitive growth of cdc15-2 cells by promoting the exit from mitosis and suppressed the temperature sensitivity of various mitotic-exit mutations. The cytokinesis defect of these mitotic-exit mutants was not suppressed by kap104-E604K. Furthermore, the kap104-E604K mutation delays entry into DNA synthesis even at a permissive temperature. In cdc15-2 kap104-E604K cells, SWI5 and SIC1, but not CDH1, became essential at a high temperature, suggesting that the kap104-E604K mutation promotes mitotic exit via the Swi5-Sic1 pathway. Interestingly, SPO12, which is involved in the release of Cdc14 from the nucleolus during early anaphase, also became essential in cdc15-2 kap104-E604K cells at a high temperature. The kap104-E604K mutation caused a partial delocalization of Cdc14 from the nucleolus during interphase. This delocalization of Cdc14 was suppressed by the deletion of SPO12. These results suggest that a mutation in Kap104 stimulates exit from mitosis through the activation of Cdc14 and implies a novel role for Kap104 in cell-cycle progression in budding yeast.
据报道,核转运蛋白β(也称为输入蛋白β)蛋白的一个亚组,包括出芽酵母的Kap104和人类转运蛋白/核转运蛋白β2,可作为将mRNA结合蛋白转运到细胞核中的受体发挥作用。我们鉴定出KAP104是cdc15 - 2抑制突变的责任基因。我们发现kap104 - E604K突变通过促进有丝分裂退出,抑制了cdc15 - 2细胞的温度敏感生长,并抑制了各种有丝分裂退出突变的温度敏感性。kap104 - E604K并未抑制这些有丝分裂退出突变体的胞质分裂缺陷。此外,即使在允许温度下,kap104 - E604K突变也会延迟进入DNA合成。在cdc15 - 2 kap104 - E604K细胞中,SWI5和SIC1,而非CDH1,在高温下变得至关重要,这表明kap104 - E604K突变通过Swi5 - Sic1途径促进有丝分裂退出。有趣的是,在后期早期参与将Cdc14从核仁释放的SPO12,在高温下的cdc15 - 2 kap104 - E604K细胞中也变得至关重要。kap104 - E604K突变导致间期Cdc14从核仁部分脱离。SPO12的缺失抑制了Cdc14的这种脱离。这些结果表明,Kap104中的突变通过激活Cdc14刺激有丝分裂退出,并暗示了Kap104在出芽酵母细胞周期进程中的新作用。