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首页> 外文期刊>Molecular and Cellular Biology >A new member of the hsp90 family of molecular chaperones interacts with the retinoblastoma protein during mitosis and after heat shock.
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A new member of the hsp90 family of molecular chaperones interacts with the retinoblastoma protein during mitosis and after heat shock.

机译:hsp90分子伴侣家族的一个新成员在有丝分裂期间和热休克后与成视网膜细胞瘤蛋白相互作用。

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A gene encoding a new heat shock protein that may function as a molecular chaperone for the retinoblastoma protein (Rb) was characterized. The cDNA fragment was isolated by using the yeast two-hybrid system and Rb as bait. The open reading frame of the longest cDNA codes for a protein with substantial sequence homology to members of the hsp90 family. Antibodies prepared against fusions between glutathione S-transferase and portions of this new heat shock protein specifically recognized a 75-kDa cellular protein, hereafter designated hsp75, which is expressed ubiquitously and located in the cytoplasm. A unique LxCxE motif in hsp75, but not in other hsp90 family members, appears to be important for binding to the simian virus 40 T-antigen-binding domain of hypophosphorylated Rb, since a single mutation changing the cysteine to methionine abolishes the binding. In mammalian cells, Rb formed complexes with hsp75 under two special physiological conditions: (i) during M phase, when the envelope that separates the nuclear and cytoplasmic compartments broke down, and (ii) after heat shock, when hsp75 moved from its normal cytoplasmic location into the nucleus. In vitro, hsp75 had a biochemical activity to refold denatured Rb into its native conformation. Taken together, these results suggest that Rb may be a physiological substrate for the hsp75 chaperone molecule. The discovery of a heat shock protein that chaperones Rb identifies a mechanism, in addition to phosphorylation, by which Rb is regulated in response to progression of the cell cycle and to external stimuli.
机译:编码新的热休克蛋白的基因可能被表征为视网膜母细胞瘤蛋白(Rb)的分子伴侣。通过使用酵母双杂交系统和Rb作为诱饵分离cDNA片段。最长的cDNA的开放阅读框编码与hsp90家族成员具有实质序列同源性的蛋白质。针对谷胱甘肽S-转移酶和这种新的热休克蛋白的部分之间的融合体制备的抗体特异性识别了一个75 kDa的细胞蛋白,以下称为hsp75,该蛋白普遍表达并位于细胞质中。 hsp75中唯一的LxCxE基序,而不是其他hsp90家族成员中的独特基序,对于结合次磷酸化Rb的猿猴病毒40 T-抗原结合域似乎很重要,因为将半胱氨酸变为蛋氨酸的单个突变消除了这种结合。在哺乳动物细胞中,Rb在两种特殊的生理条件下与hsp75形成复合物:(i)在M期,分离核和细胞质区室的包膜破裂,(ii)热激后,hsp75从其正常细胞质移出定位到核中。在体外,hsp75具有将变性的Rb重新折叠成其天然构象的生化活性。两者合计,这些结果表明Rb可能是hsp75伴侣分子的生理底物。伴侣Rb的热激蛋白的发现,除了磷酸化外,还确定了一种机制,通过Rb可以响应细胞周期的进程和外部刺激来调节Rb。

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