Magnetic Resonance Center and Department of Chemistry, University of Florence, 50019 Sesto Fiorentino, Florence, Italy.
Proc Natl Acad Sci U S A. 2013 Apr 30;110(18):7136-41. doi: 10.1073/pnas.1302378110. Epub 2013 Apr 17.
Biogenesis of iron-sulfur cluster proteins is a highly regulated process that requires complex protein machineries. In the cytosolic iron-sulfur protein assembly machinery, two human key proteins--NADPH-dependent diflavin oxidoreductase 1 (Ndor1) and anamorsin--form a stable complex in vivo that was proposed to provide electrons for assembling cytosolic iron-sulfur cluster proteins. The Ndor1-anamorsin interaction was also suggested to be implicated in the regulation of cell survival/death mechanisms. In the present work we unravel the molecular basis of recognition between Ndor1 and anamorsin and of the electron transfer process. This is based on the structural characterization of the two partner proteins, the investigation of the electron transfer process, and the identification of those protein regions involved in complex formation and those involved in electron transfer. We found that an unstructured region of anamorsin is essential for the formation of a specific and stable protein complex with Ndor1, whereas the C-terminal region of anamorsin, containing the [2Fe-2S] redox center, transiently interacts through complementary charged residues with the FMN-binding site region of Ndor1 to perform electron transfer. Our results propose a molecular model of the electron transfer process that is crucial for understanding the functional role of this interaction in human cells.
铁硫簇蛋白的生物发生是一个高度调控的过程,需要复杂的蛋白质机器。在细胞质铁硫蛋白组装机器中,两种人类关键蛋白——NADPH 依赖性双黄素氧化还原酶 1(Ndor1)和 anamorsin——在体内形成稳定的复合物,据推测该复合物为组装细胞质铁硫簇蛋白提供电子。Ndor1-anamorsin 相互作用也被认为与细胞存活/死亡机制的调节有关。在本工作中,我们揭示了 Ndor1 和 anamorsin 之间的识别以及电子转移过程的分子基础。这是基于对两个伴侣蛋白的结构特征进行表征、对电子转移过程进行调查以及确定参与复合物形成和电子转移的那些蛋白区域的基础上实现的。我们发现,anamorsin 的无结构区域对于与 Ndor1 形成特定和稳定的蛋白质复合物是必不可少的,而 anamorsin 的 C 末端区域包含[2Fe-2S]氧化还原中心,通过互补的带电残基与 Ndor1 的 FMN 结合位点区域瞬态相互作用以进行电子转移。我们的结果提出了电子转移过程的分子模型,对于理解该相互作用在人类细胞中的功能作用至关重要。