Department of Structural and Chemical Biology, Centro de Investigaciones Biológicas Margarita Salas, Ramiro de Maeztu, 9, 28040 Madrid, Spain.
Int J Mol Sci. 2020 Mar 31;21(7):2426. doi: 10.3390/ijms21072426.
The intermediate filament protein vimentin constitutes a critical sensor for electrophilic and oxidative stress. We previously showed that vimentin interacts with zinc, which affects its assembly and redox sensing. Here, we used vimentin wt and C328S, an oxidation-resistant mutant showing improved NaCl-induced polymerization, to assess the impact of zinc on soluble and polymerized vimentin by light scattering and electron microscopy. Zinc acts as a switch, reversibly inducing the formation of vimentin oligomeric species. High zinc concentrations elicit optically-detectable vimentin structures with a characteristic morphology depending on the support. These effects also occur in vimentin C328S, but are not mimicked by magnesium. Treatment of vimentin with micromolar ZnCl induces fibril-like particles that do not assemble into filaments, but form aggregates upon subsequent addition of NaCl. In contrast, when added to NaCl-polymerized vimentin, zinc increases the diameter or induces lateral association of vimentin wt filaments. Remarkably, these effects are absent or attenuated in vimentin C328S filaments. Therefore, the zinc-vimentin interaction depends on the chemical environment and on the assembly state of the protein, leading to atypical polymerization of soluble vimentin, likely through electrostatic interactions, or to broadening and lateral association of preformed filaments through mechanisms requiring the cysteine residue. Thus, the impact of zinc on vimentin assembly and redox regulation is envisaged.
中间丝蛋白波形蛋白构成了对亲电和氧化应激的关键传感器。我们之前曾表明,波形蛋白与锌相互作用,这会影响其组装和氧化还原感应。在这里,我们使用波形蛋白 wt 和 C328S(一种氧化抗性突变体,表现出改善的 NaCl 诱导聚合)来通过光散射和电子显微镜评估锌对可溶性和聚合波形蛋白的影响。锌作为一种开关,可逆地诱导波形蛋白寡聚体的形成。高锌浓度会产生具有特征形态的光可检测的波形蛋白结构,具体形态取决于支撑物。这些效应也发生在波形蛋白 C328S 中,但不会被镁模拟。用微摩尔浓度的 ZnCl 处理波形蛋白会诱导出类似纤维的颗粒,这些颗粒不会组装成纤维,而是在随后添加 NaCl 时形成聚集体。相比之下,当添加到 NaCl 聚合的波形蛋白时,锌会增加波形蛋白 wt 纤维的直径或诱导其横向缔合。值得注意的是,这些效应在波形蛋白 C328S 纤维中不存在或减弱。因此,锌与波形蛋白的相互作用取决于化学环境和蛋白质的组装状态,导致可溶性波形蛋白的异常聚合,可能通过静电相互作用,或通过需要半胱氨酸残基的机制来扩大和横向缔合预先形成的纤维。因此,预计锌对波形蛋白组装和氧化还原调节有影响。