Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125.
Department of Cell and Developmental Biology, Northwestern University, Chicago, IL 60611.
Proc Natl Acad Sci U S A. 2020 Nov 24;117(47):29702-29711. doi: 10.1073/pnas.1920323117. Epub 2020 Nov 5.
Members of the tripartite motif (TRIM) protein family have been shown to assemble into structures in both the nucleus and cytoplasm. One TRIM protein family member, TRIM5α, has been shown to form cytoplasmic bodies involved in restricting retroviruses such as HIV-1. Here we applied cryogenic correlated light and electron microscopy, combined with electron cryo-tomography, to intact mammalian cells expressing YFP-rhTRIM5α and found the presence of hexagonal nets whose arm lengths were similar to those of the hexagonal nets formed by purified TRIM5α in vitro. We also observed YFP-rhTRIM5α within a diversity of structures with characteristics expected for organelles involved in different stages of macroautophagy, including disorganized protein aggregations (sequestosomes), sequestosomes flanked by flat double-membraned vesicles (sequestosome:phagophore complexes), sequestosomes within double-membraned vesicles (autophagosomes), and sequestosomes within multivesicular autophagic vacuoles (amphisomes or autolysosomes). Vaults were also seen in these structures, consistent with their role in autophagy. Our data 1) support recent reports that TRIM5α can form both well-organized signaling complexes and nonsignaling aggregates, 2) offer images of the macroautophagy pathway in a near-native state, and 3) reveal that vaults arrive early in macroautophagy.
三聚体基序(TRIM)蛋白家族的成员已被证明可以在细胞核和细胞质中组装成结构。TRIM5α 是 TRIM 蛋白家族的一个成员,已被证明形成细胞质体,参与限制逆转录病毒,如 HIV-1。在这里,我们应用低温相关的光和电子显微镜,结合电子冷冻断层扫描,对表达 YFP-rhTRIM5α 的完整哺乳动物细胞进行了研究,发现存在六边形网络,其臂长与体外纯化的 TRIM5α 形成的六边形网络相似。我们还观察到 YFP-rhTRIM5α 存在于多种结构中,这些结构具有参与不同阶段巨自噬的细胞器的特征,包括无序的蛋白质聚集(自噬体)、被扁平双层膜囊泡包围的自噬体:噬泡复合物、双层膜囊泡内的自噬体以及多泡自噬小泡内的自噬体(自噬溶酶体或溶酶体)。这些结构中还观察到穹窿,这与它们在自噬中的作用一致。我们的数据 1)支持了最近的报告,即 TRIM5α 可以形成组织良好的信号复合物和非信号聚集物,2)提供了接近天然状态的巨自噬途径的图像,3)揭示了穹窿在巨自噬早期出现。