Sargeant John, Hay Jesse C
Division of Biological Sciences & Center for Structural & Functional Neuroscience, University of Montana, 32 Campus Drive, Missoula, MT 59812, USA.
Fac Rev. 2022 Mar 9;11:6. doi: 10.12703/r/11-6. eCollection 2022.
Constitutive vesicle trafficking is the default pathway used by all cells for movement of intracellular cargoes between subcellular compartments and in and out of the cell. Classically, constitutive trafficking was thought to be continuous and unregulated, in contrast to regulated secretion, wherein vesicles are stored intracellularly until undergoing synchronous membrane fusion following a Ca signal. However, as shown in the literature reviewed here, many continuous trafficking steps can be up- or down-regulated by Ca, including several steps associated with human pathologies. Notably, we describe a series of Ca pumps, channels, Ca-binding effector proteins, and their trafficking machinery targets that together regulate the flux of cargo in response to genetic alterations as well as baseline and agonist-dependent Ca signals. Here, we review the most recent advances, organized by organellar location, that establish the importance of these components in trafficking steps. Ultimately, we conclude that Ca regulates an expanding series of distinct mechanistic steps. Furthermore, the involvement of Ca in trafficking is complex. For example, in some cases, the same Ca effectors regulate surprisingly distinct trafficking steps, or even the same trafficking step with opposing influences, through binding to different target proteins.
组成型囊泡运输是所有细胞用于在亚细胞区室之间以及进出细胞的细胞内货物运输的默认途径。传统上,组成型运输被认为是连续且不受调控的,这与调节性分泌形成对比,在调节性分泌中,囊泡在细胞内储存,直到在钙信号后经历同步膜融合。然而,正如本文所综述的文献所示,许多连续的运输步骤可以被钙上调或下调,包括与人类病理学相关的几个步骤。值得注意的是,我们描述了一系列钙泵、通道、钙结合效应蛋白及其运输机制靶点,它们共同响应基因改变以及基线和激动剂依赖性钙信号来调节货物通量。在这里,我们按细胞器位置对最新进展进行综述,这些进展确立了这些成分在运输步骤中的重要性。最终,我们得出结论,钙调节着越来越多不同的机制步骤。此外,钙在运输中的参与是复杂的。例如,在某些情况下,相同的钙效应蛋白通过与不同的靶蛋白结合,调节惊人地不同的运输步骤,甚至对相同的运输步骤产生相反的影响。