首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Conserved juxtamembrane domains in the yeast golgin Coy1 drive assembly of a megadalton-sized complex and mediate binding to tethering and SNARE proteins
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Conserved juxtamembrane domains in the yeast golgin Coy1 drive assembly of a megadalton-sized complex and mediate binding to tethering and SNARE proteins

机译:酵母高尔金Coy1中保守的近膜结构域驱动兆达尔顿大小的复合体的组装并介导与束缚和SNARE蛋白的结合

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摘要

The architecture and organization of the Golgi complex depend on a family of coiled-coil proteins called golgins. Golgins are thought to form extended homodimers that are C-terminally anchored to Golgi membranes, whereas their N termini extend into the cytoplasm to initiate vesicle capture. Previously, we reported that the Saccharomyces cerevisiae golgin Coy1 contributes to intra-Golgi retrograde transport and binds to the conserved oligomeric Golgi (COG) complex and multiple retrograde Golgi Q-SNAREs (where SNARE is soluble NSF-attachment protein receptor). Here, using various engineered yeast strains, membrane protein extraction and fractionation methods, and in vitro binding assays, we mapped the Coy1 regions responsible for these activities. We also report that Coy1 assembles into a megadalton-size complex and that assembly of this complex depends on the most C-terminal coiled-coil and a conserved region between this coiled-coil and the transmembrane domain of Coy1. We found that this conserved region is necessary and sufficient for binding the SNARE protein Sed5 and the COG complex. Mutagenesis of conserved arginine residues within the C-terminal coiled-coil disrupted oligomerization, binding, and function of Coy1. Our findings indicate that the stable incorporation of Coy1 into a higher-order oligomer is required for its interactions and role in maintaining Golgi homeostasis. We propose that Coy1 assembles into a docking platform that directs COG-bound vesicles toward cognate SNAREs on the Golgi membrane.
机译:高尔基复合体的结构和组织取决于称为高尔金斯的卷曲螺旋蛋白家族。高尔金被认为形成延伸的同型二聚体,其C端锚定在高尔基体膜上,而它们的N末端延伸到细胞质中以启动囊泡捕获。以前,我们报道了酿酒酵母高尔金Coy1有助于高尔基体内逆行运输,并与保守的低聚高尔基(COG)复合体和多个逆行高尔基Q-SNARE(其中SNARE是可溶性NSF附着蛋白受体)结合。在这里,我们使用各种工程酵母菌株,膜蛋白提取和分级分离方法以及体外结合测定,我们绘制了负责这些活性的Coy1区。我们还报告说,Coy1组装成兆达尔顿大小的复合物,并且该复合物的组装取决于大多数C末端卷曲螺旋以及该卷曲螺旋与Coy1跨膜结构域之间的保守区域。我们发现,该保守区对于结合SNARE蛋白Sed5和COG复合物是必需的和足够的。诱变的C末端卷曲螺旋内的保守精氨酸残基破坏了Coy1的寡聚,结合和功能。我们的发现表明,将Coy1稳定结合到高阶低聚物中是其相互作用和维持高尔基体动态平衡所必需的。我们建议将Coy1组装到对接平台中,该平台将COG结合的囊泡引向高尔基体膜上的同源SNARE。

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