Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka 565-0871.
Graduate School of Frontier Biosciences, Osaka University, Suita, Osaka 565-0871.
J Biol Chem. 2013 Jun 7;288(23):16680-16689. doi: 10.1074/jbc.M112.416602. Epub 2013 Apr 12.
The emerging link between iron metabolism and genome integrity is increasingly clear. Recent studies have revealed that MMS19 and cytosolic iron-sulfur cluster assembly (CIA) factors form a complex and have central roles in CIA pathway. However, the composition of the CIA complex, particularly the involvement of the Fe-S protein IOP1, is still unclear. The roles of each component are also largely unknown. Here, we show that MMS19, MIP18, and CIAO1 form a tight "core" complex and that IOP1 is an "external" component of this complex. Although IOP1 and the core complex form a complex both in vivo and in vitro, IOP1 behaves differently in vivo. A deficiency in any core component leads to down-regulation of all of the components. In contrast, IOP1 knockdown does not affect the level of any core component. In MMS19-overproducing cells, other core components are also up-regulated, but the protein level of IOP1 remains unchanged. IOP1 behaves like a target protein in the CIA reaction, like other Fe-S helicases, and the core complex may participate in the maturation process of IOP1. Alternatively, the core complex may catch and hold IOP1 when it becomes mature to prevent its degradation. In any case, IOP1 functions in the MMS19-dependent CIA pathway. We also reveal that MMS19 interacts with target proteins. MIP18 has a role to bridge MMS19 and CIAO1. CIAO1 also binds IOP1. Based on our in vivo and in vitro data, new models of the CIA machinery are proposed.
铁代谢与基因组完整性之间的新兴联系越来越明显。最近的研究表明,MMS19 和细胞质铁硫簇组装(CIA)因子形成复合物,并在 CIA 途径中具有核心作用。然而,CIA 复合物的组成,特别是 Fe-S 蛋白 IOP1 的参与,仍然不清楚。每个组件的作用也在很大程度上是未知的。在这里,我们表明 MMS19、MIP18 和 CIAO1 形成紧密的“核心”复合物,而 IOP1 是该复合物的“外部”组成部分。尽管 IOP1 和核心复合物在体内和体外都形成复合物,但 IOP1 在体内的行为不同。任何核心组件的缺乏都会导致所有组件的下调。相比之下,IOP1 的敲低不会影响任何核心组件的水平。在 MMS19 过表达的细胞中,其他核心组件也被上调,但 IOP1 的蛋白质水平保持不变。IOP1 像 CIA 反应中的其他 Fe-S 解旋酶一样,是一种靶蛋白,核心复合物可能参与 IOP1 的成熟过程。或者,核心复合物可能在 IOP1 成熟时抓住并保持它,以防止其降解。在任何情况下,IOP1 都在 MMS19 依赖的 CIA 途径中发挥作用。我们还揭示了 MMS19 与靶蛋白相互作用。MIP18 在桥接 MMS19 和 CIAO1 方面具有作用。CIAO1 也与 IOP1 结合。基于我们的体内和体外数据,提出了新的 CIA 机制模型。