School of Life Science and Technology, ShanghaiTech University, Shanghai, 201210, China.
University of Chinese Academy of Sciences, 100049 Beijing, China.
Proc Natl Acad Sci U S A. 2021 Apr 6;118(14). doi: 10.1073/pnas.2022933118.
Receptor-interacting protein kinases 3 (RIPK3), a central node in necroptosis, polymerizes in response to the upstream signals and then activates its downstream mediator to induce cell death. The active polymeric form of RIPK3 has been indicated as the form of amyloid fibrils assembled via its RIP homotypic interaction motif (RHIM). In this study, we combine cryogenic electron microscopy and solid-state NMR to determine the amyloid fibril structure of RIPK3 RHIM-containing C-terminal domain (CTD). The structure reveals a single protofilament composed of the RHIM domain. RHIM forms three β-strands (referred to as strands 1 through 3) folding into an S shape, a distinct fold from that in complex with RIPK1. The consensus tetrapeptide VQVG of RHIM forms strand 2, which zips up strands 1 and 3 via heterozipper-like interfaces. Notably, the RIPK3-CTD fibril, as a physiological fibril, exhibits distinctive assembly compared with pathological fibrils. It has an exceptionally small fibril core and twists in both handedness with the smallest pitch known so far. These traits may contribute to a favorable spatial arrangement of RIPK3 kinase domain for efficient phosphorylation.
受体相互作用蛋白激酶 3(RIPK3)是细胞程序性坏死(necroptosis)的核心节点,它在响应上游信号时会发生聚合,然后激活其下游介质以诱导细胞死亡。RIPK3 的活性聚合形式已被证明是通过其 RIP 同源相互作用基序(RHIM)组装的淀粉样纤维形式。在这项研究中,我们结合低温电子显微镜和固态 NMR 来确定包含 RHIM 的 RIPK3 C 端结构域(CTD)的淀粉样纤维结构。该结构揭示了一个由 RHIM 结构域组成的单一原纤维。RHIM 形成三个β-链(称为链 1 至 3),折叠成 S 形,这与与 RIPK1 形成的复合物中的折叠形式明显不同。RHIM 的共识四肽 VQVG 形成链 2,通过异拉链样界面将链 1 和 3 连接起来。值得注意的是,与病理性纤维相比,RIPK3-CTD 纤维作为一种生理纤维,其组装方式具有独特性。它具有异常小的纤维核心,并以迄今为止已知的最小螺距同时向两个方向扭曲。这些特征可能有助于 RIPK3 激酶结构域的有效磷酸化,以实现有利的空间排列。