Roberts Benjamin S, Satpute-Krishnan Prasanna
Department of Biochemistry and Molecular Biology, Uniformed Services University of the Health Sciences, Bethesda, MD, United States.
Front Cell Dev Biol. 2023 Jan 16;10:1096899. doi: 10.3389/fcell.2022.1096899. eCollection 2022.
The secretory pathway is an intracellular highway for the vesicular transport of newly synthesized proteins that spans the endoplasmic reticulum (ER), Golgi, lysosomes and the cell surface. A variety of cargo receptors, chaperones, and quality control proteins maintain the smooth flow of cargo along this route. Among these is vesicular transport protein TMED9, which belongs to the p24/transmembrane emp24 domain (TMED) family of proteins, and is expressed across vertebrate species. The TMED family is comprised of structurally-related type I transmembrane proteins with a luminal N-terminal Golgi-dynamics domain, a luminal coiled-coil domain, a transmembrane domain and a short cytosolic C-terminal tail that binds COPI and COPII coat proteins. TMED9, like other members of the TMED family, was first identified as an abundant constituent of the COPI and COPII coated vesicles that mediate traffic between the ER and the Golgi. TMED9 is typically purified in hetero-oligomers together with TMED family members, suggesting that it may function as part of a complex. Recently, TMED family members have been discovered to play various roles in secretory pathway homeostasis including secreted protein processing, quality control and degradation of misfolded proteins, and post-Golgi trafficking. In particular, TMED9 has been implicated in autophagy, lysosomal sorting, viral replication and cancer, which we will discuss in this Mini-Review.
分泌途径是一条细胞内的高速公路,用于新合成蛋白质的囊泡运输,其跨越内质网(ER)、高尔基体、溶酶体和细胞表面。多种货物受体、伴侣蛋白和质量控制蛋白维持货物在这条途径上的顺畅流动。其中包括囊泡运输蛋白TMED9,它属于p24/跨膜emp24结构域(TMED)蛋白家族,在脊椎动物物种中均有表达。TMED家族由结构相关的I型跨膜蛋白组成,具有腔内N端高尔基体动力学结构域、腔内卷曲螺旋结构域、跨膜结构域和短的胞质C端尾巴,该尾巴可结合COPI和COPII衣被蛋白。与TMED家族的其他成员一样,TMED9最初被鉴定为介导内质网和高尔基体之间运输的COPI和COPII被膜囊泡的丰富成分。TMED9通常与TMED家族成员一起以异源寡聚体形式纯化,这表明它可能作为复合物的一部分发挥作用。最近,人们发现TMED家族成员在分泌途径稳态中发挥各种作用,包括分泌蛋白加工、错误折叠蛋白的质量控制和降解以及高尔基体后运输。特别是,TMED9与自噬、溶酶体分选、病毒复制和癌症有关,我们将在本综述中进行讨论。