Zouhar Jan, Rojo Enrique, Bassham Diane C
Departamento de Genética Molecular de Plantas, Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas, E-28049 Madrid, Spain.
Plant Physiol. 2009 Apr;149(4):1668-78. doi: 10.1104/pp.108.134361. Epub 2009 Feb 27.
We report a functional characterization of AtVPS45 (for vacuolar protein sorting 45), a protein from the Sec1/Munc18 family in Arabidopsis (Arabidopsis thaliana) that interacts at the trans-Golgi network (TGN) with the SYP41/SYP61/VTI12 SNARE complex. A null allele of AtVPS45 was male gametophytic lethal, whereas stable RNA interference lines with reduced AtVPS45 protein levels had stunted growth but were viable and fertile. In the silenced lines, we observed defects in vacuole formation that correlated with a reduction in cell expansion and with autophagy-related defects in nutrient turnover. Moreover, transport of vacuolar cargo with carboxy-terminal vacuolar sorting determinants was blocked in the silenced lines, suggesting that AtVPS45 functions in vesicle trafficking to the vacuole. These trafficking defects are similar to those observed in vti12 mutants, supporting a functional relationship between AtVPS45 and VTI12. Consistent with this, we found a decrease in SYP41 protein levels coupled to the silencing of AtVPS45, pointing to instability and malfunction of the SYP41/SYP61/VTI12 SNARE complex in the absence of its cognate Sec1/Munc18 regulator. Based on its localization on the TGN, we hypothesized that AtVPS45 could be involved in membrane fusion of retrograde vesicles recycling vacuolar trafficking machinery. Indeed, in the AtVPS45-silenced plants, we found a striking alteration in the subcellular fractionation pattern of vacuolar sorting receptors, which are required for sorting of carboxy-terminal vacuolar sorting determinant-containing cargo. We propose that AtVPS45 is essential for recycling of the vacuolar sorting receptors back to the TGN and that blocking this step underlies the defects in vacuolar cargo trafficking observed in the silenced lines.
我们报道了拟南芥中AtVPS45(液泡蛋白分选45)的功能特性,它是一种来自Sec1/Munc18家族的蛋白,在反式高尔基体网络(TGN)中与SYP41/SYP61/VTI12 SNARE复合体相互作用。AtVPS45的无效等位基因是雄配子体致死的,而AtVPS45蛋白水平降低的稳定RNA干扰株系生长发育迟缓,但仍能存活且可育。在这些沉默株系中,我们观察到液泡形成缺陷,这与细胞扩张减少以及营养物质周转中自噬相关缺陷有关。此外,带有羧基末端液泡分选决定簇的液泡货物运输在沉默株系中受阻,这表明AtVPS45在向液泡的囊泡运输中发挥作用。这些运输缺陷与在vti12突变体中观察到的缺陷相似,支持了AtVPS45与VTI12之间的功能关系。与此一致的是,我们发现随着AtVPS45的沉默,SYP41蛋白水平下降,这表明在缺乏其同源Sec1/Munc18调节因子的情况下,SYP(41)/SYP61/VTI12 SNARE复合体不稳定且功能失调。基于其在TGN上的定位,我们推测AtVPS45可能参与回收液泡运输机制的逆行囊泡的膜融合过程。实际上,在AtVPS45沉默的植物中,我们发现液泡分选受体的亚细胞分级分离模式发生了显著改变,而液泡分选受体是分选含有羧基末端液泡分选决定簇的货物所必需的。我们提出AtVPS45对于液泡分选受体循环回到TGN至关重要,并且阻断这一步骤是沉默株系中观察到的液泡货物运输缺陷的基础。