Cyr D M, Douglas M G
Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill 27599-7260.
J Biol Chem. 1994 Apr 1;269(13):9798-804.
In Saccharomyces cerevisiae Ydj1p, a DnaJ homolog, is localized to the cytosol with the Ssa and Ssb Hsp70 proteins. Ydj1p helps facilitate polypeptide translocation across mitochondrial and endoplasmic reticulum membranes (Caplan, A. J., Cyr, D. M., and Douglas, M. G. (1992) Cell 71, 1143-1155) and can directly interact with Ssa1p to regulate chaperone activity (Cyr, D. M., Lu, X., and Douglas, M. G. (1992) J. Biol. Chem. 267, 20927-20931). In this study, the role of Ydj1p in modulating ATP-dependent reactions catalyzed by Ssa and Ssb Hsp70 proteins has been examined using purified components and compared with that of other Hsp70 homologs BiP and DnaK. Ssa1p, Ssa2p, and Ssb1/2p all formed stable complexes with the mitochondrial presequence peptide, F1 beta(1-51). ATP alone had only modest effects on polypeptide complex formation with Ssa1p and Ssa2p, but prevented the majority of polypeptide binding to BiP and DnaK. ATP by itself also reduced polypeptide binding to Ssb1/2p to a level that was intermediate between that observed for the Ssa Hsp70 proteins tested and BiP and DnaK. ATP hydrolysis by Ssa1p, Ssa2p, and Ssb1/2p occurred at similar rates. Ydj1p was a potent modulator of the both the ATPase and polypeptide binding activities of Ssa1p and Ssa2p. In contrast, Ydj1p had little effect on the ATPase and polypeptide binding activity of Ssb1/2p. Therefore the chaperone-related activities of Ssa and Ssb Hsp70 proteins exhibit significant differences in sensitivity to ATP and YDJ1p. These data indicate that regulation of Hsp70 activity by DnaJ homologs can be specific. The specificity of interactions between Ydj1p and the Ssa and Ssb Hsp70 proteins observed could contribute in determining the functional specificity of these chaperones in the cytosol. In related experiments, F1 beta(1-51) was found to reduce the extent to which Ydj1p stimulated Ssa1p ATPase activity. This effect correlated with the formation of F1 beta(1-51).Ssa1p complexes. We propose that intramolecular communication between the polypeptide binding, ATPase and DnaJ regulatory domains on Ssa1p plays a role in the regulation of chaperone activity.
在酿酒酵母中,DnaJ同源蛋白Ydj1p与Ssa和Ssb Hsp70蛋白一起定位于细胞质中。Ydj1p有助于促进多肽跨线粒体和内质网膜的转运(卡普兰,A.J., Cyr,D.M.,和道格拉斯,M.G.(1992年)《细胞》71卷,1143 - 1155页),并且可以直接与Ssa1p相互作用以调节伴侣活性(Cyr,D.M.,卢,X.,和道格拉斯,M.G.(1992年)《生物化学杂志》267卷,20927 - 20931页)。在本研究中,使用纯化的组分研究了Ydj1p在调节由Ssa和Ssb Hsp70蛋白催化的ATP依赖性反应中的作用,并与其他Hsp70同源蛋白BiP和DnaK进行了比较。Ssa1p、Ssa2p和Ssb1/2p都与线粒体前导序列肽F1β(1 - 51)形成了稳定的复合物。单独的ATP对与Ssa1p和Ssa2p形成多肽复合物的影响较小,但阻止了大部分多肽与BiP和DnaK结合。ATP本身也将多肽与Ssb1/2p的结合降低到介于所测试的Ssa Hsp70蛋白以及BiP和DnaK之间的水平。Ssa1p、Ssa2p和Ssb1/2p的ATP水解以相似的速率发生。Ydj1p是Ssa1p和Ssa2p的ATP酶活性和多肽结合活性的有效调节剂。相比之下,Ydj1p对Ssb1/2p的ATP酶和多肽结合活性影响很小。因此,Ssa和Ssb Hsp70蛋白的伴侣相关活性在对ATP和YDJ1p的敏感性方面表现出显著差异。这些数据表明DnaJ同源蛋白对Hsp70活性的调节可能具有特异性。观察到的Ydj1p与Ssa和Ssb Hsp70蛋白之间相互作用的特异性可能有助于确定这些伴侣蛋白在细胞质中的功能特异性。在相关实验中,发现F1β(1 - 51)降低了Ydj1p刺激Ssa1p ATP酶活性的程度。这种效应与F1β(1 - 51).Ssa1p复合物的形成相关。我们提出Ssa1p上多肽结合、ATP酶和DnaJ调节结构域之间的分子内通讯在伴侣活性的调节中起作用。