Magnetic Resonance Center, University of Florence, Via Luigi Sacconi 6, 50019 Sesto Fiorentino, Florence, Italy.
Proc Natl Acad Sci U S A. 2010 Nov 23;107(47):20190-5. doi: 10.1073/pnas.1010095107. Epub 2010 Nov 8.
Several proteins of the mitochondrial intermembrane space are targeted by internal targeting signals. A class of such proteins with α-helical hairpin structure bridged by two intramolecular disulfides is trapped by a Mia40-dependent oxidative process. Here, we describe the oxidative folding mechanism underpinning this process by an exhaustive structural characterization of the protein in all stages and as a complex with Mia40. Two consecutive induced folding steps are at the basis of the protein-trapping process. In the first one, Mia40 functions as a molecular chaperone assisting α-helical folding of the internal targeting signal of the substrate. Subsequently, in a Mia40-independent manner, folding of the second substrate helix is induced by the folded targeting signal functioning as a folding scaffold. The Mia40-induced folding pathway provides a proof of principle for the general concept that internal targeting signals may operate as a folding nucleus upon compartment-specific activation.
几种线粒体膜间空间的蛋白质被内部靶向信号靶向。一类具有α-螺旋发夹结构的此类蛋白质由两个分子内二硫键桥接,被 Mia40 依赖的氧化过程所捕获。在这里,我们通过对蛋白质在所有阶段以及与 Mia40 形成复合物的详细结构表征,描述了这一过程的氧化折叠机制。连续的两个诱导折叠步骤是蛋白质捕获过程的基础。在第一个步骤中,Mia40 作为分子伴侣发挥作用,辅助底物内部靶向信号的α-螺旋折叠。随后,以 Mia40 不依赖的方式,折叠的第二个底物螺旋通过作为折叠支架的折叠靶向信号诱导。Mia40 诱导的折叠途径为一般概念提供了原理证明,即内部靶向信号在特定隔室激活时可能作为折叠核心起作用。