Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Biol Chem. 2013 Jun 14;288(24):17734-44. doi: 10.1074/jbc.M112.443929. Epub 2013 Apr 23.
Chaperonins are a family of chaperones that encapsulate their substrates and assist their folding in an ATP-dependent manner. The ubiquitous eukaryotic chaperonin, TCP-1 ring complex (TRiC), is a hetero-oligomeric complex composed of two rings, each formed from eight different CCT (chaperonin containing TCP-1) subunits. Each CCT subunit may have distinct substrate recognition and ATP hydrolysis properties. We have expressed each human CCT subunit individually in Escherichia coli to investigate whether they form chaperonin-like double ring complexes. CCT4 and CCT5, but not the other six CCT subunits, formed high molecular weight complexes within the E. coli cells that sedimented about 20S in sucrose gradients. When CCT4 and CCT5 were purified, they were both organized as two back-to-back rings of eight subunits each, as seen by negative stain and cryo-electron microscopy. This morphology is consistent with that of the hetero-oligomeric double-ring TRiC purified from bovine testes and HeLa cells. Both CCT4 and CCT5 homo-oligomers hydrolyzed ATP at a rate similar to human TRiC and were active as assayed by luciferase refolding and human γD-crystallin aggregation suppression and refolding. Thus, both CCT4 and CCT5 homo-oligomers have the property of forming 8-fold double rings absent the other subunits, and these complexes carry out chaperonin reactions without other partner subunits.
伴侣蛋白是一类伴侣分子,它们将底物包裹起来,并以依赖 ATP 的方式协助其折叠。普遍存在的真核伴侣蛋白,TCP-1 环复合物(TRiC),是一种由两个环组成的异源寡聚复合物,每个环由八个不同的 CCT(含 TCP-1 的伴侣蛋白)亚基组成。每个 CCT 亚基可能具有不同的底物识别和 ATP 水解特性。我们已经在大肠杆菌中单独表达了每个人类 CCT 亚基,以研究它们是否形成类似伴侣蛋白的双环复合物。CCT4 和 CCT5,但不是其他六个 CCT 亚基,在大肠杆菌细胞内形成高分子量复合物,在蔗糖梯度中沉降约 20S。当 CCT4 和 CCT5 被纯化时,它们都以两个背对背的八聚体环的形式存在,这可以通过负染色和 cryo-EM 观察到。这种形态与从牛睾丸和 HeLa 细胞中纯化的异源寡聚双环 TRiC 一致。CCT4 和 CCT5 同源寡聚体以类似于人类 TRiC 的速度水解 ATP,并通过荧光素酶重折叠和人 γD-晶体蛋白聚集抑制和重折叠测定显示具有活性。因此,CCT4 和 CCT5 同源寡聚体具有形成 8 倍双重环的特性,而没有其他亚基,并且这些复合物在没有其他伴侣亚基的情况下进行伴侣蛋白反应。