Dragovic Zdravko, Shomura Yasuhito, Tzvetkov Nikolay, Hartl F Ulrich, Bracher Andreas
Department of Cellular Biochemistry, Max Planck Institute of Biochemistry, Am Klopferspitz 18, D-82152 Martinsried, Germany.
Biol Chem. 2006 Dec;387(12):1593-600. doi: 10.1515/BC.2006.198.
The HspBP1 homolog Fes1p was recently identified as a nucleotide exchange factor (NEF) of Ssa1p, a canonical Hsp70 molecular chaperone in the cytosol of Saccharomyces cerevisiae. Besides the Ssa-type Hsp70s, the yeast cytosol contains three additional classes of Hsp70, termed Ssb, Sse and Ssz. Here, we show that Fes1p also functions as NEF for the ribosome-bound Ssb Hsp70s. Sequence analysis indicated that residues important for interaction with Fes1p are highly conserved in Ssa1p and Ssb1p, but not in Sse1p and Ssz1p. Indeed, Fes1p interacts with Ssa1p and Ssb1p with similar affinity, but does not form a complex with Sse1p. Functional analysis showed that Fes1p accelerates the release of the nucleotide analog MABA-ADP from Ssb1p by a factor of 35. In contrast to the interaction between mammalian HspBP1 and Hsp70, however, addition of ATP only moderately decreases the affinity of Fes1p for Ssb1p. Point mutations in Fes1p abolishing complex formation with Ssa1p also prevent the interaction with Ssb1p. The ATPase activity of Ssb1p is stimulated by the ribosome-associated complex of Zuotin and Ssz1p (RAC). Interestingly, Fes1p inhibits the stimulation of Ssb1p ATPase by RAC, suggesting a complex regulatory role of Fes1p in modulating the function of Ssb Hsp70s in co-translational protein folding.
热休克蛋白结合蛋白1(HspBP1)的同源物Fes1p最近被鉴定为Ssa1p的核苷酸交换因子(NEF),Ssa1p是酿酒酵母细胞质中一种典型的热休克蛋白70(Hsp70)分子伴侣。除了Ssa型Hsp70s外,酵母细胞质还包含另外三类Hsp70,分别称为Ssb、Sse和Ssz。在这里,我们表明Fes1p也作为核糖体结合的Ssb Hsp70s的NEF发挥作用。序列分析表明,与Fes1p相互作用重要的残基在Ssa1p和Ssb1p中高度保守,但在Sse1p和Ssz1p中则不然。事实上,Fes1p与Ssa1p和Ssb1p以相似的亲和力相互作用,但不与Sse1p形成复合物。功能分析表明Fes1p将核苷酸类似物MABA-ADP从Ssb1p中的释放速度加快了35倍。然而,与哺乳动物HspBP1和Hsp70之间的相互作用不同,添加ATP仅适度降低Fes1p与Ssb1p的亲和力。Fes1p中消除与Ssa1p形成复合物的点突变也会阻止与Ssb1p的相互作用。Ssb1p的ATP酶活性受到Zuotin和Ssz1p的核糖体相关复合物(RAC)的刺激。有趣的是,Fes1p抑制RAC对Ssb1p ATP酶的刺激,这表明Fes1p在共翻译蛋白质折叠过程中调节Ssb Hsp70s功能方面具有复杂的调节作用。