Millson Stefan H, Truman Andrew W, Wolfram Francis, King Victoria, Panaretou Barry, Prodromou Chrisostomos, Pearl Laurence H, Piper Peter W
Department of Molecular Biology and Biotechnology, The University of Sheffield, Firth Court, Western Bank, Sheffield S10 2TN, UK.
Cell Stress Chaperones. 2004 Winter;9(4):359-68. doi: 10.1379/csc-29r1.1.
The Hsp90 chaperone cycle involves sequential assembly of different Hsp90-containing multiprotein complexes, the accessory proteins ("cochaperones") that are associated with these complexes being exchanged as the cycle proceeds from its early to its late stages. To gain insight as to whether the 2-hybrid system could be used to probe the interactions of this Hsp90 system, yeast transformants were constructed that express the Gal4p deoxyribonucleic acid-binding domain (BD) fused to the 2 Hsp90 isoforms and the various Hsp90 system cochaperones of yeast. These "bait" fusions were then introduced by mating into other transformants expressing nearly all the 6000 proteins of yeast expressed as fusions to the Gal4p activation domain (AD). High throughput 2-hybrid screening revealed the ability of Hsp90 and Hsp90 system cochaperones to engage in stable interactions in vivo, both with each other and with the various other proteins of the yeast proteome. Consistent with the transience of most chaperone associations, interactions to Hsp90 itself were invariably weak and generally influenced by stress. Mutations within a Hsp90-BD bait fusion and an AD-Cdc37 "prey" fusion were used to provide in vivo confirmation of the in vitro data that shows that Cdc37p is interacting with the "relaxed" conformation of Hsp90 and also to provide indications that Cdc37p needs to be phosphorylated at its N-terminus for any appreciable interaction with Hsp90. A number of potentially novel cochaperone interactions were also identified, providing a framework for these to be analyzed further using other techniques.
热休克蛋白90(Hsp90)伴侣循环涉及不同的含Hsp90多蛋白复合物的顺序组装,随着循环从早期阶段进入晚期阶段,与这些复合物相关的辅助蛋白(“伴侣蛋白”)会发生交换。为了深入了解双杂交系统是否可用于探究该Hsp90系统的相互作用,构建了酵母转化体,其表达与两种Hsp90异构体以及酵母的各种Hsp90系统伴侣蛋白融合的Gal4p脱氧核糖核酸结合结构域(BD)。然后通过交配将这些“诱饵”融合体引入其他转化体,这些转化体表达几乎所有酵母的6000种蛋白,它们与Gal4p激活结构域(AD)融合表达。高通量双杂交筛选揭示了Hsp90和Hsp90系统伴侣蛋白在体内相互之间以及与酵母蛋白质组中其他各种蛋白进行稳定相互作用的能力。与大多数伴侣蛋白结合的短暂性一致,与Hsp90自身的相互作用总是很弱,并且通常受应激影响。Hsp90 - BD诱饵融合体和AD - Cdc37“猎物”融合体中的突变用于在体内证实体外数据,该数据表明Cdc37p与Hsp90的“松弛”构象相互作用,并且还表明Cdc37p需要在其N端磷酸化才能与Hsp90进行任何明显的相互作用。还鉴定了许多潜在的新型伴侣蛋白相互作用,为使用其他技术进一步分析这些相互作用提供了框架。