Department of Physiology, Juntendo University Graduate School of Medicine, Bunkyo-ku, Tokyo, 113-8421, Japan.
Biochemistry Division, Chemistry Department, Faculty of Science, Tanta University, Tanta, 31527, Egypt.
Nat Commun. 2022 Dec 21;13(1):7857. doi: 10.1038/s41467-022-35501-0.
Protein modification by ubiquitin-like proteins (UBLs) amplifies limited genome information and regulates diverse cellular processes, including translation, autophagy and antiviral pathways. Ubiquitin-fold modifier 1 (UFM1) is a UBL covalently conjugated with intracellular proteins through ufmylation, a reaction analogous to ubiquitylation. Ufmylation is involved in processes such as endoplasmic reticulum (ER)-associated protein degradation, ribosome-associated protein quality control at the ER and ER-phagy. However, it remains unclear how ufmylation regulates such distinct ER-related functions. Here we identify a UFM1 substrate, NADH-cytochrome b5 reductase 3 (CYB5R3), that localizes on the ER membrane. Ufmylation of CYB5R3 depends on the E3 components UFL1 and UFBP1 on the ER, and converts CYB5R3 into its inactive form. Ufmylated CYB5R3 is recognized by UFBP1 through the UFM1-interacting motif, which plays an important role in the further uyfmylation of CYB5R3. Ufmylated CYB5R3 is degraded in lysosomes, which depends on the autophagy-related protein Atg7- and the autophagy-adaptor protein CDK5RAP3. Mutations of CYB5R3 and genes involved in the UFM1 system cause hereditary developmental disorders, and ufmylation-defective Cyb5r3 knock-in mice exhibit microcephaly. Our results indicate that CYB5R3 ufmylation induces ER-phagy, which is indispensable for brain development.
泛素样蛋白 (UBLs) 通过蛋白质的泛素化修饰对其进行修饰,从而放大有限的基因组信息并调控多种细胞进程,包括翻译、自噬和抗病毒通路。泛素折叠修饰酶 1 (UFM1) 是一种通过 ufmylation 与细胞内蛋白共价结合的 UBL,该反应类似于泛素化。ufmylation 参与内质网 (ER) 相关蛋白降解、核糖体相关蛋白在 ER 中的质量控制以及 ER 自噬等过程。然而,ufmylation 如何调控如此不同的 ER 相关功能仍不清楚。本文中,作者鉴定了一种 UFM1 底物 NADH-细胞色素 b5 还原酶 3 (CYB5R3),其定位于 ER 膜上。CYB5R3 的 ufmylation 依赖于 ER 上的 E3 成分 UFL1 和 UFBP1,并将 CYB5R3 转化为其无活性形式。UFBP1 通过 UFM1 相互作用基序识别 ufmylated CYB5R3,该基序在 CYB5R3 的进一步 ufmylation 中发挥重要作用。ufmylated CYB5R3 可在溶酶体中降解,该过程依赖于自噬相关蛋白 Atg7 和自噬衔接蛋白 CDK5RAP3。CYB5R3 的突变和 UFM1 系统中相关基因的突变会导致遗传性发育障碍,而 ufmylation 缺陷型 Cyb5r3 敲入小鼠表现出小头畸形。本文研究结果表明,CYB5R3 的 ufmylation 可诱导 ER 自噬,这对于大脑发育是必不可少的。