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ALG-2 和 peflin 通过调节 COPII 靶向和分泌来响应钙信号。

ALG-2 and peflin regulate COPII targeting and secretion in response to calcium signaling.

机构信息

Division of Biological Sciences, Center for Structural and Functional Neuroscience, University of Montana, Missoula, Montana, USA.

Molecular Biology and Biochemistry, Gottfried Schatz Research Center, Medical University of Graz, Graz, Austria.

出版信息

J Biol Chem. 2021 Dec;297(6):101393. doi: 10.1016/j.jbc.2021.101393. Epub 2021 Nov 8.

Abstract

ER-to-Golgi transport is the first step in the constitutive secretory pathway, which, unlike regulated secretion, is believed to proceed nonstop independent of Ca flux. However, here we demonstrate that penta-EF hand (PEF) proteins ALG-2 and peflin constitute a hetero-bifunctional COPII regulator that responds to Ca signaling by adopting one of several distinct activity states. Functionally, these states can adjust the rate of ER export of COPII-sorted cargos up or down by ∼50%. We found that at steady-state Ca, ALG-2/peflin hetero-complexes bind to ER exit sites (ERES) through the ALG-2 subunit to confer a low, buffered secretion rate, while peflin-lacking ALG-2 complexes markedly stimulate secretion. Upon Ca signaling, ALG-2 complexes lacking peflin can either increase or decrease the secretion rate depending on signaling intensity and duration-phenomena that could contribute to cellular growth and intercellular communication following secretory increases or protection from excitotoxicity and infection following decreases. In epithelial normal rat kidney (NRK) cells, the Ca-mobilizing agonist ATP causes ALG-2 to depress ER export, while in neuroendocrine PC12 cells, Ca mobilization by ATP results in ALG-2-dependent enhancement of secretion. Furthermore, distinct Ca signaling patterns in NRK cells produce opposing ALG-2-dependent effects on secretion. Mechanistically, ALG-2-dependent depression of secretion involves decreased levels of the COPII outer shell and increased peflin targeting to ERES, while ALG-2-dependent enhancement of secretion involves increased COPII outer shell and decreased peflin at ERES. These data provide insights into how PEF protein dynamics affect secretion of important physiological cargoes such as collagen I and significantly impact ER stress.

摘要

内质网-高尔基体运输是组成型分泌途径的第一步,与调节性分泌不同,该途径被认为是独立于 Ca 流不间断进行的。然而,在这里我们证明 penta-EF hand (PEF) 蛋白 ALG-2 和 peflin 构成了一种异源双功能的 COPII 调节剂,它可以通过采用几种不同的活性状态来响应 Ca 信号。从功能上讲,这些状态可以将 COPII 分拣货物的内质网出口率提高或降低约 50%。我们发现,在稳态 Ca 下,ALG-2/peflin 异源复合物通过 ALG-2 亚基与内质网出口位点 (ERES) 结合,从而赋予低缓冲分泌率,而缺乏 peflin 的 ALG-2 复合物则显著刺激分泌。在 Ca 信号转导下,缺乏 peflin 的 ALG-2 复合物可以根据信号强度和持续时间增加或减少分泌速率——这些现象可能有助于细胞在分泌增加时的生长和细胞间通讯,或者在分泌减少时防止兴奋毒性和感染。在正常大鼠肾 (NRK) 上皮细胞中,Ca 动员激动剂 ATP 导致 ALG-2 抑制 ER 出口,而在神经内分泌 PC12 细胞中,ATP 引起的 Ca 动员导致 ALG-2 依赖的分泌增强。此外,NRK 细胞中不同的 Ca 信号模式产生了相反的依赖于 ALG-2 的分泌效应。从机制上讲,依赖于 ALG-2 的分泌抑制涉及 COPII 外壳水平降低和 peflin 向 ERES 的靶向增加,而依赖于 ALG-2 的分泌增强涉及 COPII 外壳水平增加和 ERES 处的 peflin 减少。这些数据提供了关于 PEF 蛋白动力学如何影响重要生理货物(如胶原蛋白 I)的分泌的见解,并对 ER 应激产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01ae/8671942/8fc14be301a7/gr1.jpg

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