Li R, Havel C, Watson J A, Murray A W
Department of Biochemistry, University of California, San Francisco 94143-0444.
Nature. 1993 Nov 4;366(6450):82-4. doi: 10.1038/366082a0.
The mad2-1 mutation inactivates the cell-cycle feedback control that prevents budding yeast cells from leaving mitosis until spindle assembly is complete. The gene product of MAD2 shows significant sequence similarity to the alpha-subunit of prenyltransferases. Here we isolate a new temperature-sensitive mad2 mutant, mad2-2ts, and find that Mad2p is required for the membrane association of Ypt1p and Sec4p, two prenylated small GTP-binding proteins involved in protein trafficking. Extracts from mad2-2ts mutant cells fail to geranylgeranylate a number of substrates at the non-permissive temperature. mad2-2ts is synthetically lethal with bet2-1, a mutation in the gene that encodes for the beta-subunit of the Ypt1p and Sec4p geranylgeranyl transferase. Therefore MAD2 and BET2 gene products may physically interact to form a geranylgeranyl transferase complex. In addition, the difference between the phenotypes of mad2-1 and mad2-2ts suggests that MAD2 has distinct roles in protein transport and the mitotic feedback control.
mad2-1突变使细胞周期反馈控制失活,这种控制可防止出芽酵母细胞在纺锤体组装完成之前离开有丝分裂。MAD2的基因产物与异戊二烯转移酶的α亚基具有显著的序列相似性。在这里,我们分离出一种新的温度敏感型mad2突变体mad2-2ts,并发现Mad2p是Ypt1p和Sec4p膜结合所必需的,Ypt1p和Sec4p是两种参与蛋白质运输的异戊二烯化小GTP结合蛋白。在非允许温度下,来自mad2-2ts突变体细胞的提取物无法将多种底物香叶基香叶基化。mad2-2ts与bet2-1是合成致死的,bet2-1是编码Ypt1p和Sec4p香叶基香叶基转移酶β亚基的基因突变。因此,MAD2和BET2基因产物可能在物理上相互作用形成香叶基香叶基转移酶复合物。此外,mad2-1和mad2-2ts表型之间的差异表明MAD2在蛋白质运输和有丝分裂反馈控制中具有不同的作用。