Xu Hui, He Xiaojing, Zheng Hui, Huang Lily J, Hou Fajian, Yu Zhiheng, de la Cruz Michael Jason, Borkowski Brian, Zhang Xuewu, Chen Zhijian J, Jiang Qiu-Xing
Department of Cell Biology, University of Texas Southwestern Medical Center, Dallas, United States.
Elife. 2014 Jan 1;3:e01489. doi: 10.7554/eLife.01489.
Mitochondrial antiviral signaling (MAVS) protein is required for innate immune responses against RNA viruses. In virus-infected cells MAVS forms prion-like aggregates to activate antiviral signaling cascades, but the underlying structural mechanism is unknown. Here we report cryo-electron microscopic structures of the helical filaments formed by both the N-terminal caspase activation and recruitment domain (CARD) of MAVS and a truncated MAVS lacking part of the proline-rich region and the C-terminal transmembrane domain. Both structures are left-handed three-stranded helical filaments, revealing specific interfaces between individual CARD subunits that are dictated by electrostatic interactions between neighboring strands and hydrophobic interactions within each strand. Point mutations at multiple locations of these two interfaces impaired filament formation and antiviral signaling. Super-resolution imaging of virus-infected cells revealed rod-shaped MAVS clusters on mitochondria. These results elucidate the structural mechanism of MAVS polymerization, and explain how an α-helical domain uses distinct chemical interactions to form self-perpetuating filaments. DOI: http://dx.doi.org/10.7554/eLife.01489.001.
线粒体抗病毒信号(MAVS)蛋白是针对RNA病毒的固有免疫反应所必需的。在病毒感染的细胞中,MAVS形成朊病毒样聚集体以激活抗病毒信号级联反应,但其潜在的结构机制尚不清楚。在此,我们报告了由MAVS的N端半胱天冬酶激活和募集结构域(CARD)以及缺少部分富含脯氨酸区域和C端跨膜结构域的截短MAVS形成的螺旋丝的冷冻电子显微镜结构。这两种结构均为左手三链螺旋丝,揭示了各个CARD亚基之间的特定界面,这些界面由相邻链之间的静电相互作用和每条链内的疏水相互作用决定。这两个界面多个位置的点突变会损害丝的形成和抗病毒信号传导。对病毒感染细胞的超分辨率成像显示线粒体上有杆状MAVS簇。这些结果阐明了MAVS聚合的结构机制,并解释了α螺旋结构域如何利用不同的化学相互作用形成自我延续的丝。DOI: http://dx.doi.org/10.7554/eLife.01489.001。