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酵母CDC37基因与MPS1相互作用,是纺锤极体复制正常进行所必需的。

The yeast CDC37 gene interacts with MPS1 and is required for proper execution of spindle pole body duplication.

作者信息

Schutz A R, Giddings T H, Steiner E, Winey M

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado-Boulder, 80309-0347, USA.

出版信息

J Cell Biol. 1997 Mar 10;136(5):969-82. doi: 10.1083/jcb.136.5.969.

Abstract

The MPS1 gene from Saccharomyces cerevisiae encodes an essential protein kinase required for spindle pole body (SPB) duplication and for the mitotic spindle assembly checkpoint. Cells with the mps1-1 mutation fail early in SPB duplication and proceed through monopolar mitosis with lethal consequences. We identified CDC37 as a multicopy suppressor of mps1-1 temperature-sensitive growth. Suppression is allele specific, and synthetic lethal interactions occur between mps1 and cdc37 alleles. We examined the cdc37-1 phenotype for defects related to the SPB cycle. The cdc37-1 temperature-sensitive allele causes unbudded, G1 arrest at Start (Reed, S.I. 1980. Genetics. 95: 561-577). Reciprocal shifts demonstrate that cdc37-1 arrest is interdependent with alpha-factor arrest but is not a normal Start arrest. Although the cells are responsive to alpha-factor at the arrest, SPB duplication is uncoupled from other aspects of G1 progression and proceeds past the satellite-bearing SPB stage normally seen at Start. Electron microscopy reveals side-by-side SPBs at cdc37-1 arrest. The outer plaque of one SPB is missing or reduced, while the other is normal. Using the mps2-1 mutation to distinguish between the SPBs, we find that the outer plaque defect is specific to the new SPB. This phenotype may arise in part from reduced Mps1p function: although Mps1p protein levels are unaffected by the cdc37-1 mutation, kinase activity is markedly reduced. These data demonstrate a requirement for CDC37 in SPB duplication and suggest a role for this gene in G1 control. CDC37 may provide a chaperone function that promotes the activity of protein kinases.

摘要

酿酒酵母的MPS1基因编码一种纺锤体极体(SPB)复制和有丝分裂纺锤体组装检查点所需的必需蛋白激酶。具有mps1 - 1突变的细胞在SPB复制早期就会失败,并进行单极有丝分裂,导致致命后果。我们鉴定出CDC37是mps1 - 1温度敏感型生长的多拷贝抑制因子。抑制是等位基因特异性的,并且mps1和cdc37等位基因之间会发生合成致死相互作用。我们检查了cdc37 - 1表型中与SPB周期相关的缺陷。cdc37 - 1温度敏感型等位基因导致在起始点(Reed,S.I. 1980. Genetics. 95: 561 - 577)出现未出芽的G1期停滞。交替转移实验表明,cdc37 - 1停滞与α因子停滞相互依赖,但不是正常的起始点停滞。尽管细胞在停滞时对α因子有反应,但SPB复制与G1期进展的其他方面解偶联,并且会越过通常在起始点看到的带有卫星的SPB阶段继续进行。电子显微镜显示在cdc37 - 1停滞时SPB并列存在。一个SPB的外板缺失或减少,而另一个正常。利用mps2 - 1突变来区分SPB,我们发现外板缺陷特定于新的SPB。这种表型可能部分源于Mps1p功能的降低:尽管Mps1p蛋白水平不受cdc37 - 1突变的影响,但激酶活性明显降低。这些数据证明了CDC37在SPB复制中的必要性,并表明该基因在G1期调控中发挥作用。CDC37可能提供一种伴侣功能,促进蛋白激酶的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ae0/2132477/6a387456bd30/JCB.schutz3.jpg

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