Chen S, Sullivan W P, Toft D O, Smith D F
Department of Pharmacology, University of Nebraska Medical Center, Omaha 68198-6260, USA.
Cell Stress Chaperones. 1998 Jun;3(2):118-29. doi: 10.1379/1466-1268(1998)003<0118:diopat>2.3.co;2.
Hsp90 is required for the normal function of steroid receptors, but its binding to steroid receptors is mediated by Hsc70 and several hsp-associated accessory proteins. An assortment of Hsp90 mutants were tested for their abilities to interact with each of the following accessories: Hop, Cyp40, FKBP52, FKBP51, and p23. Of the 11 Hsp90 mutants tested, all were defective to some extent in associating with progestin (PR) complexes. In every case, however, reduced PR binding correlated with a defect in binding of one or more accessories. Co-precipitation of mutant Hsp90 forms with individual accessories was used to map Hsp90 sequences required for accessory protein interactions. Mutation of Hsp90's highly conserved C-terminal EEVD to AAVD resulted in diminished interactions with several accessory proteins, most particularly with Hop. Deletion of amino acids 661-677 resulted in loss of Hsp90 dimerization and also caused diminished interactions with all accessory proteins. Binding of p23 mapped most strongly to the N-terminal ATP-binding domain of Hsp90 while binding of TPR proteins mapped to the C-terminal half of Hsp90. These results and others further suggest that the N- and C-terminal regions of Hsp90 maintain important conformational links through intramolecular interactions and/or intermolecular influences in homodimers.
热休克蛋白90(Hsp90)是类固醇受体正常功能所必需的,但它与类固醇受体的结合是由热休克同源蛋白70(Hsc70)和几种与热休克蛋白相关的辅助蛋白介导的。对一系列Hsp90突变体与以下每种辅助蛋白相互作用的能力进行了测试:Hop、Cyp40、FKBP52、FKBP51和p23。在测试的11种Hsp90突变体中,所有突变体在与孕激素(PR)复合物结合方面都存在一定程度的缺陷。然而,在每种情况下,PR结合减少都与一种或多种辅助蛋白结合缺陷相关。通过突变体Hsp90与单个辅助蛋白的共沉淀来定位辅助蛋白相互作用所需的Hsp90序列。将Hsp90高度保守的C末端EEVD突变为AAVD会导致与几种辅助蛋白的相互作用减弱,尤其是与Hop的相互作用。删除氨基酸661 - 677会导致Hsp90二聚化丧失,也会导致与所有辅助蛋白的相互作用减弱。p23的结合最强烈地定位于Hsp90的N末端ATP结合结构域,而TPR蛋白的结合定位于Hsp90的C末端一半区域。这些结果及其他结果进一步表明,Hsp90的N末端和C末端区域通过分子内相互作用和/或同型二聚体中的分子间影响维持着重要的构象联系。