Chow I-Ting, Barnett Micheal E, Zolkiewski Michal, Baneyx François
Department of Chemical Engineering, University of Washington, Box 351750, Seattle, WA 98195, USA.
FEBS Lett. 2005 Aug 15;579(20):4242-8. doi: 10.1016/j.febslet.2005.06.055.
ClpB/Hsp104 collaborates with the Hsp70 system to promote the solubilization and reactivation of proteins that misfold and aggregate following heat shock. In Escherichia coli and other eubacteria, two ClpB isoforms (ClpB95 and ClpB80) that differ by the presence or absence of a highly mobile 149-residues long N-terminus domain are synthesized from the same transcript. Whether and how the N-domain contributes to ClpB chaperone activity remains controversial. Here, we show that, whereas fusion of a 20-residues long hexahistidine extension to the N-terminus of ClpB95 interferes with its in vivo and in vitro activity, the same tag has no detectable effect on ClpB80 function. In addition, ClpB95 is more effective than ClpB80 at restoring the folding of the model protein preS2-beta-galactosidase as stress severity increases, and is superior to ClpB80 in improving the high temperature growth and low temperature recovery of dnaK756 DeltaclpB cells. Our results are consistent with a model in which the N-domain of ClpB95 maximizes substrate processing under conditions where the cellular supply of free DnaK-DnaJ is limiting.
ClpB/Hsp104与Hsp70系统协同作用,促进热休克后错误折叠和聚集的蛋白质的溶解和重新激活。在大肠杆菌和其他真细菌中,由同一转录本合成两种ClpB同工型(ClpB95和ClpB80),它们的区别在于是否存在一个高度可移动的149个残基长的N端结构域。N结构域是否以及如何影响ClpB伴侣活性仍存在争议。在这里,我们表明,虽然在ClpB95的N端融合一个20个残基长的六组氨酸延伸会干扰其体内和体外活性,但相同的标签对ClpB80的功能没有可检测到的影响。此外,随着应激严重程度的增加,ClpB95在恢复模型蛋白前S2-β-半乳糖苷酶的折叠方面比ClpB80更有效,并且在改善dnaK756 ΔclpB细胞的高温生长和低温恢复方面优于ClpB80。我们的结果与一个模型一致,即ClpB95的N结构域在游离DnaK-DnaJ的细胞供应有限的条件下使底物加工最大化。