Turnbull Emma L, Martin Ina V, Fantes Peter A
Institute of Cell Biology, School of Biological Sciences, University of Edinburgh, UK.
FEBS J. 2005 Aug;272(16):4129-40. doi: 10.1111/j.1742-4658.2005.04825.x.
Cdc37 is a molecular chaperone that interacts with a range of clients and co-chaperones, forming various high molecular mass complexes. Cdc37 sequence homology among species is low. High homology between yeast and metazoan proteins is restricted to the extreme N-terminal region, which is known to bind clients that are predominantly protein kinases. We show that despite the low homology, both Saccharomyces cerevisiae and human Cdc37 are able to substitute for the Schizosaccharomyces pombe protein in a strain deleted for the endogenous cdc37 gene. Expression of a construct consisting of only the N-terminal domain of S. pombe Cdc37, lacking the postulated heat-shock protein (Hsp) 90-binding and homodimerization domains, can also sustain cellular viability, indicating that Cdc37 dimerization and interactions with the cochaperone Hsp90 may not be essential for Cdc37 function in S. pombe. Biochemical investigations showed that a small proportion of total cellular Cdc37 occurs in a high molecular mass complex that also contains Hsp90. These data indicate that the N-terminal domain of Cdc37 carries out essential functions independently of the Hsp90-binding domain and dimerization of the chaperone itself.
Cdc37是一种分子伴侣,它与一系列客户蛋白和共伴侣相互作用,形成各种高分子量复合物。物种间Cdc37的序列同源性较低。酵母和后生动物蛋白质之间的高度同源性仅限于极端的N端区域,该区域已知可结合主要为蛋白激酶的客户蛋白。我们表明,尽管同源性较低,但酿酒酵母和人类Cdc37都能够在内源cdc37基因缺失的菌株中替代粟酒裂殖酵母蛋白。仅由粟酒裂殖酵母Cdc37的N端结构域组成的构建体的表达,缺乏假定的热休克蛋白(Hsp)90结合和同二聚化结构域,也能维持细胞活力,这表明Cdc37二聚化以及与共伴侣Hsp90的相互作用可能对粟酒裂殖酵母中Cdc37的功能不是必需的。生化研究表明,总细胞Cdc37的一小部分存在于还包含Hsp90的高分子量复合物中。这些数据表明,Cdc37的N端结构域独立于Hsp90结合结构域和伴侣蛋白本身的二聚化发挥重要功能。