Perham Michael, Wittung-Stafshede Pernilla
Department of Chemistry, Rice University, 6100 Main Street, Houston, TX 77251, United States.
Arch Biochem Biophys. 2007 Aug 15;464(2):306-13. doi: 10.1016/j.abb.2007.04.020. Epub 2007 May 7.
The ring-shaped heptameric co-chaperonin protein 10 (cpn10) is one of few oligomeric beta-sheet proteins that unfold and disassemble reversibly in vitro. Here, we labeled human mitochondrial cpn10 with donor and acceptor dyes to obtain FRET signals. Cpn10 mixed in a 1:1:5 ratio of donor:acceptor:unlabeled monomers form heptamers that are active in an in vitro functional assay. Monomer-monomer affinity, as well as thermal and chemical stability, of the labeled cpn10 is similar to the unlabeled protein, demonstrating that the labels do not perturb the system. Using changes in FRET, we then probed for the first time cpn10 heptamer-monomer assembly/disassembly kinetics. Heptamer dissociation is very slow (1/k(diss) approximately 3h; 20 degrees C, pH 7) corresponding to an activation energy of approximately 50kJ/mol. Ring-ring mixing experiments reveal that cpn10 heptamer dissociation is rate limiting; subsequent associations events are faster. Kinetic inertness explains how cpn10 cycles on and off cpn60 as an intact heptamer in vivo.
环状七聚体伴侣蛋白10(cpn10)是少数在体外能可逆展开和解聚的寡聚β-折叠蛋白之一。在此,我们用供体和受体染料标记人线粒体cpn10以获得荧光共振能量转移(FRET)信号。按供体:受体:未标记单体1:1:5的比例混合的cpn10形成七聚体,其在体外功能测定中具有活性。标记的cpn10的单体-单体亲和力以及热稳定性和化学稳定性与未标记的蛋白相似,表明标记不会干扰该系统。然后,我们首次利用FRET的变化探究cpn10七聚体-单体组装/解聚动力学。七聚体解离非常缓慢(1/k(diss)约为3小时;20℃,pH 7),对应约50kJ/mol的活化能。环-环混合实验表明cpn10七聚体解离是限速步骤;随后的缔合事件更快。动力学惰性解释了cpn10如何在体内作为完整的七聚体在cpn60上循环开启和关闭。