Vembar Shruthi S, Jin Yi, Brodsky Jeffrey L, Hendershot Linda M
Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
J Biol Chem. 2009 Nov 20;284(47):32462-71. doi: 10.1074/jbc.M109.000729. Epub 2009 Sep 11.
Heat shock proteins of 70 kDa (Hsp70s) and their J domain-containing Hsp40 cofactors are highly conserved chaperone pairs that facilitate a large number of cellular processes. The observation that each Hsp70 partners with many J domain-containing proteins (JDPs) has led to the hypothesis that Hsp70 function is dictated by cognate JDPs. If this is true, one might expect highly divergent Hsp70-JDP pairs to be unable to function in vivo. However, we discovered that, when a yeast cytosolic JDP, Ydj1, was targeted to the mammalian endoplasmic reticulum (ER), it interacted with the ER-lumenal Hsp70, BiP, and bound to BiP substrates. Conversely, when a mammalian ER-lumenal JDP, ERdj3, was directed to the yeast cytosol, it rescued the temperature-sensitive growth phenotype of yeast-containing mutant alleles in two cytosolic JDPs, HLJ1 and YDJ1, and activated the ATP hydrolysis rate of Ssa1, the yeast cytosolic Hsp70 that partners with Hlj1 and Ydj1. Surprisingly, ERdj3 mutants that were compromised for substrate binding were unable to rescue the hlj1ydj1 growth defect even though they stimulated the ATPase activity of Ssa1. Yet, J domain mutants of ERdj3 that were defective for interaction with Ssa1 restored the growth of hlj1ydj1 yeast. Taken together, these data suggest that the substrate binding properties of certain JDPs, not simply the formation of unique Hsp70-JDP pairs, are critical to specify in vivo function.
70千道尔顿的热休克蛋白(Hsp70s)及其含J结构域的Hsp40辅因子是高度保守的伴侣蛋白对,它们促进大量细胞过程。每个Hsp70与许多含J结构域的蛋白质(JDPs)结合的观察结果导致了这样一种假说,即Hsp70的功能由同源JDPs决定。如果这是真的,人们可能会预期高度分化的Hsp70-JDP对在体内无法发挥作用。然而,我们发现,当酵母胞质JDP Ydj1靶向哺乳动物内质网(ER)时,它与内质网腔Hsp70 BiP相互作用并结合到BiP底物上。相反,当哺乳动物内质网腔JDP ERdj3定向到酵母胞质中时,它挽救了含有两个胞质JDP HLJ1和YDJ1突变等位基因的酵母的温度敏感生长表型,并激活了与Hlj1和Ydj1结合的酵母胞质Hsp70 Ssa1的ATP水解速率。令人惊讶的是,尽管底物结合受损的ERdj3突变体刺激了Ssa1的ATP酶活性,但它们无法挽救hlj1ydj1的生长缺陷。然而,与Ssa1相互作用有缺陷的ERdj3的J结构域突变体恢复了hlj1ydj1酵母的生长。综上所述,这些数据表明某些JDPs的底物结合特性,而不仅仅是独特的Hsp70-JDP对的形成,对于确定体内功能至关重要。