Krukenberg Kristin A, Böttcher Ulrike M K, Southworth Daniel R, Agard David A
Graduate Program in Chemistry and Chemical Biology, University of California, San Francisco, California 94158, USA.
Protein Sci. 2009 Sep;18(9):1815-27. doi: 10.1002/pro.191.
The molecular chaperone, Hsp90, is an essential eukaryotic protein that assists in the maturation and activation of client proteins. Hsp90 function depends upon the binding and hydrolysis of ATP, which causes large conformational rearrangements in the chaperone. Hsp90 is highly conserved from bacteria to eukaryotes, and similar nucleotide-dependent conformations have been demonstrated for the bacterial, yeast, and human proteins. There are, however, important species-specific differences in the ability of nucleotide to shift the conformation from one state to another. Although the role of nucleotide in conformation has been well studied for the cytosolic yeast and human proteins, the conformations found in the absence of nucleotide are less well understood. In contrast to cytosolic Hsp90, crystal structures of the endoplasmic reticulum homolog, Grp94, show the same conformation in the presence of both ADP and AMPPNP. This conformation differs from the yeast AMPPNP-bound crystal state, suggesting that Grp94 may have a different conformational cycle. In this study, we use small angle X-ray scattering and rigid body modeling to study the nucleotide free states of cytosolic yeast and human Hsp90s, as well as mouse Grp94. We show that all three proteins adopt an extended, chair-like conformation distinct from the extended conformation observed for the bacterial Hsp90. For Grp94, we also show that nucleotide causes a small shift toward the crystal state, although the extended state persists as the major population. These results provide the first evidence that Grp94 shares a conformational state with other Hsp90 homologs.
分子伴侣Hsp90是一种必需的真核生物蛋白质,它协助客户蛋白的成熟和激活。Hsp90的功能依赖于ATP的结合和水解,这会导致伴侣蛋白发生大的构象重排。从细菌到真核生物,Hsp90高度保守,并且已证明细菌、酵母和人类蛋白质具有类似的核苷酸依赖性构象。然而,核苷酸将构象从一种状态转变为另一种状态的能力存在重要的物种特异性差异。尽管核苷酸在构象中的作用已在胞质酵母和人类蛋白质中得到充分研究,但在没有核苷酸的情况下发现的构象却了解较少。与胞质Hsp90不同,内质网同源物Grp94的晶体结构在存在ADP和AMPPNP时显示相同的构象。这种构象与酵母AMPPNP结合的晶体状态不同,表明Grp94可能具有不同的构象循环。在这项研究中,我们使用小角X射线散射和刚体建模来研究胞质酵母和人类Hsp90以及小鼠Grp94的无核苷酸状态。我们表明,所有这三种蛋白质都采用一种伸展的、类似椅子的构象,这与细菌Hsp90观察到的伸展构象不同。对于Grp94,我们还表明核苷酸会导致向晶体状态的小位移,尽管伸展状态仍然是主要群体。这些结果提供了第一个证据,表明Grp94与其他Hsp90同源物共享一种构象状态。