Centre for Mechanochemical Cell Biology, Warwick Medical School, University of Warwick, Coventry, UK.
J Cell Biol. 2020 Jan 6;219(1). doi: 10.1083/jcb.201812044.
Transport of proteins and lipids from one membrane compartment to another is via intracellular vesicles. We investigated the function of tumor protein D54 (TPD54/TPD52L2) and found that TPD54 was involved in multiple membrane trafficking pathways: anterograde traffic, recycling, and Golgi integrity. To understand how TPD54 controls these diverse functions, we used an inducible method to reroute TPD54 to mitochondria. Surprisingly, this manipulation resulted in the capture of many small vesicles (30 nm diameter) at the mitochondrial surface. Super-resolution imaging confirmed the presence of similarly sized TPD54-positive structures under normal conditions. It appears that TPD54 defines a new class of transport vesicle, which we term intracellular nanovesicles (INVs). INVs meet three criteria for functionality. They contain specific cargo, they have certain R-SNAREs for fusion, and they are endowed with a variety of Rab GTPases (16 out of 43 tested). The molecular heterogeneity of INVs and the diverse functions of TPD54 suggest that INVs have various membrane origins and a number of destinations. We propose that INVs are a generic class of transport vesicle that transfer cargo between these varied locations.
蛋白质和脂质从一个膜隔室到另一个膜隔室的运输是通过细胞内囊泡进行的。我们研究了肿瘤蛋白 D54(TPD54/TPD52L2)的功能,发现 TPD54 参与了多种膜运输途径:正向运输、回收和高尔基体完整性。为了了解 TPD54 如何控制这些不同的功能,我们使用了一种诱导方法将 TPD54 重新路由到线粒体。令人惊讶的是,这种操作导致在线粒体表面捕获了许多小囊泡(30nm 直径)。超分辨率成像证实,在正常条件下存在大小相似的 TPD54 阳性结构。似乎 TPD54 定义了一类新的运输囊泡,我们将其称为细胞内纳米囊泡(INV)。INV 符合三个功能性标准。它们包含特定的货物,具有特定的用于融合的 R-SNARE,并且具有各种 Rab GTPase(在 43 个测试中 16 个)。INV 的分子异质性和 TPD54 的多种功能表明,INV 具有各种膜起源和多个目的地。我们提出,INV 是一种通用的运输囊泡类,可在这些不同位置之间转移货物。