Department of Biochemistry, University of Washington, Seattle, Washington.
Department of Physiology and Biophysics, University of Washington, Seattle, Washington.
Traffic. 2017 Nov;18(11):720-732. doi: 10.1111/tra.12507. Epub 2017 Sep 13.
Dense-core vesicles (DCVs) are secretory organelles that store and release modulatory neurotransmitters from neurons and endocrine cells. Recently, the conserved coiled-coil protein CCCP-1 was identified as a component of the DCV biogenesis pathway in the nematode Caenorhabditis elegans. CCCP-1 binds the small GTPase RAB-2 and colocalizes with it at the trans-Golgi. Here, we report a structure-function analysis of CCCP-1 to identify domains of the protein important for its localization, binding to RAB-2, and function in DCV biogenesis. We find that the CCCP-1 C-terminal domain (CC3) has multiple activities. CC3 is necessary and sufficient for CCCP-1 localization and for binding to RAB-2, and is required for the function of CCCP-1 in DCV biogenesis. In addition, CCCP-1 binds membranes directly through its CC3 domain, indicating that CC3 may comprise a previously uncharacterized lipid-binding motif. We conclude that CCCP-1 is a coiled-coil protein that binds an activated Rab and localizes to the Golgi via its C-terminus, properties similar to members of the golgin family of proteins. CCCP-1 also shares biophysical features with golgins; it has an elongated shape and forms oligomers.
致密核心囊泡 (DCVs) 是储存和释放神经元和内分泌细胞中调节性神经递质的分泌细胞器。最近,保守的卷曲螺旋蛋白 CCCP-1 被鉴定为线虫秀丽隐杆线虫 DCV 生物发生途径的一个组成部分。CCCP-1 与小 GTP 酶 RAB-2 结合,并与 RAB-2 共定位在反式高尔基体。在这里,我们报告了 CCCP-1 的结构功能分析,以确定该蛋白对其定位、与 RAB-2 结合以及在 DCV 生物发生中的功能重要的结构域。我们发现 CCCP-1 的 C 端结构域 (CC3) 具有多种活性。CC3 对于 CCCP-1 的定位和与 RAB-2 的结合是必需和充分的,并且对于 CCCP-1 在 DCV 生物发生中的功能是必需的。此外,CCCP-1 通过其 CC3 结构域直接与膜结合,表明 CC3 可能包含一个以前未被描述的脂质结合基序。我们得出结论,CCCP-1 是一种卷曲螺旋蛋白,通过其 C 端与激活的 Rab 结合并定位于高尔基体,这与高尔基体蛋白家族的成员具有相似的性质。CCCP-1 还与 golgins 具有相似的生物物理特征;它具有细长的形状并形成寡聚体。