University of Utah Health Sciences Center, Department of Medicine, Salt Lake City, Utah, USA.
Mol Cell Biol. 2012 Nov;32(21):4400-9. doi: 10.1128/MCB.00441-12. Epub 2012 Aug 27.
The final step in the assembly of the ubiquinol-cytochrome c reductase or bc(1) complex involves the insertion of the Rieske Fe/S cluster protein, Rip1. Maturation of Rip1 occurs within the mitochondrial matrix prior to its translocation across the inner membrane (IM) in a process mediated by the Bcs1 ATPase and subsequent insertion into the bc(1) complex. Here we show that the matrix protein Mzm1 functions as a Rip1 chaperone, stabilizing Rip1 prior to the translocation step. In the absence of Mzm1, Rip1 is prone to either proteolytic degradation or temperature-induced aggregation. A series of Rip1 truncations were engineered to probe motifs necessary for Mzm1 interaction and Bcs1-mediated translocation of Rip1. The Mzm1 interaction with Rip1 persists in Rip1 variants lacking its transmembrane domain or containing only its C-terminal globular Fe/S domain. Replacement of the globular domain of Rip1 with that of the heterologous folded protein Grx3 abrogated Mzm1 interaction; however, appending the C-terminal 30 residues of Rip1 to the Rip1-Grx3 chimera restored Mzm1 interaction. The Rip1-Grx3 chimera and a Rip1 truncation containing only the N-terminal 92 residues each induced stabilization of the bc(1):cytochrome oxidase supercomplex in a Bcs1-dependent manner. However, the Rip1 variants were not stably associated with the supercomplex. The induced supercomplex stabilization by the Rip1 N terminus was independent of Mzm1.
泛醌-细胞色素 c 还原酶或 bc(1) 复合物的组装的最后一步涉及 Rieske Fe/S 簇蛋白 Rip1 的插入。Rip1 的成熟发生在线粒体基质中,然后在 Bcs1 ATP 酶介导的转运穿过内膜 (IM) 并随后插入 bc(1) 复合物之前。在这里,我们表明基质蛋白 Mzm1 作为 Rip1 伴侣,在转运步骤之前稳定 Rip1。在没有 Mzm1 的情况下,Rip1 容易受到蛋白水解降解或温度诱导的聚集。设计了一系列 Rip1 截断以探测与 Mzm1 相互作用和 Bcs1 介导的 Rip1 转运所必需的基序。在 Rip1 变体中缺乏跨膜结构域或仅包含其 C 末端球状 Fe/S 结构域的情况下,Mzm1 与 Rip1 的相互作用仍然存在。用异源折叠蛋白 Grx3 替换 Rip1 的球状结构域会消除 Mzm1 的相互作用;然而,将 Rip1 的 C 末端 30 个残基附加到 Rip1-Grx3 嵌合体上恢复了 Mzm1 的相互作用。Rip1-Grx3 嵌合体和仅包含 N 末端 92 个残基的 Rip1 截断都以 Bcs1 依赖的方式诱导 bc(1):细胞色素氧化酶超复合物的稳定。然而,Rip1 变体与超复合物不稳定相关。Rip1 N 末端诱导的超复合物稳定与 Mzm1 无关。