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MDA5 assembles into a polar helical filament on dsRNA

机译:MDA5在dsRNA上组装成极性螺旋丝

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摘要

Melanoma differentiation-associated protein 5 (MDA5) detects viral dsRNA in the cytoplasm. On binding of RNA, MDA5 forms polymers, which trigger assembly of the signaling adaptor mitochondrial antiviral-signaling protein (MAVS) into its active fibril form. The molecular mechanism of MDA5 signaling is not well understood, however. Here we show that MDA5 forms helical filaments on dsRNA and report the 3D structure of the filaments using electron microscopy (EM) and image reconstruction. MDA5 assembles into a polar, single-start helix around the RNA. Fitting of an MDA5 homology model into the structure suggests a key role for the MDA5 C-terminal domain in cooperative filament assembly. Our study supports a signal transduction mechanism in which the helical array of MDA5 within filaments nucleates the assembly of MAVS fibrils. We conclude that MDA5 is a polymerization-dependent signaling platform that uses the amyloid-like self-propagating properties of MAVS to amplify signaling.
机译:黑色素瘤分化相关蛋白5(MDA5)检测细胞质中的病毒dsRNA。在RNA结合后,MDA5形成聚合物,从而触发信号转导线粒体抗病毒信号蛋白(MAVS)组装成其活性原纤维形式。但是,MDA5信号转导的分子机制尚不十分清楚。在这里,我们显示MDA5在dsRNA上形成螺旋状细丝,并使用电子显微镜(EM)和图像重建报告细丝的3D结构。 MDA5围绕RNA组装成极性单启动螺旋。 MDA5同源模型拟合结构表明MDA5 C末端域在协同丝装配中的关键作用。我们的研究支持一种信号转导机制,其中细丝内的MDA5螺旋阵列使MAVS纤丝的组装成核。我们得出的结论是,MDA5是一个依赖于聚合的信号平台,它使用MAVS的淀粉样样自我繁殖特性来放大信号。

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