Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, Massachusetts 01605, USA.
J Biol Chem. 2010 Jan 1;285(1):234-41. doi: 10.1074/jbc.M109.060129. Epub 2009 Nov 11.
Homo-oligomeric proteins fulfill numerous functions in all cells. The ability to co-express subunits of these proteins that preferentially self-assemble without cross-oligomerizing provides for controlled experiments to analyze the function of mutant homo-oligomers in vivo. Hsp90 is a dimeric chaperone involved in the maturation of many kinases and steroid hormone receptors. We observed that co-expression of different Hsp90 subunits in Saccharomyces cerevisiae caused unpredictable synthetic growth defects due to cross-dimerization. We engineered superstabilized Hsp90 dimers that resisted cross-dimerization with endogenous Hsp90 and alleviated the synthetic growth defect. Superstabilized Hsp90 dimers supported robust growth of S. cerevisiae, indicating that dissociation of Hsp90 dimers could be hindered without compromising essential function. We utilized superstabilized dimers to analyze the activity of ATPase mutant homodimers in a temperature-sensitive yeast background where elevated temperature inactivated all other Hsp90 species. We found that ATP binding and hydrolysis by Hsp90 are both required for the efficient maturation of glucocorticoid receptor and v-Src, confirming the critical role of ATP hydrolysis in the maturation of steroid hormone receptors and kinases in vivo.
同聚体蛋白在所有细胞中都具有多种功能。能够共表达这些蛋白质的亚基,这些亚基优先自我组装而不发生交叉寡聚化,从而为分析体内突变同聚体的功能提供了可控的实验条件。Hsp90 是一种二聚体伴侣蛋白,参与许多激酶和甾体激素受体的成熟过程。我们观察到,在酿酒酵母中共同表达不同的 Hsp90 亚基会由于交叉二聚化而导致不可预测的合成生长缺陷。我们设计了超稳定的 Hsp90 二聚体,它们可以抵抗与内源性 Hsp90 的交叉二聚化,并减轻合成生长缺陷。超稳定的 Hsp90 二聚体支持酿酒酵母的健壮生长,表明二聚体的解离可以受到阻碍而不影响其基本功能。我们利用超稳定的二聚体来分析在温度敏感型酵母背景下 ATPase 突变同二聚体的活性,在该背景下,高温使所有其他 Hsp90 物种失活。我们发现 Hsp90 的 ATP 结合和水解对糖皮质激素受体和 v-Src 的有效成熟都是必需的,这证实了 ATP 水解在体内甾体激素受体和激酶成熟过程中的关键作用。