Department of Cell Biology, Heidelberg Institute for Plant Sciences, University of Heidelberg, Germany.
Plant J. 2010 Jan;61(1):107-21. doi: 10.1111/j.1365-313X.2009.04034.x. Epub 2009 Oct 1.
Receptor-mediated sorting processes in the secretory pathway of eukaryotic cells rely on mechanisms to recycle the receptors after completion of transport. Based on this principle, plant vacuolar sorting receptors (VSRs) are thought to recycle after dissociating of receptor-ligand complexes in a pre-vacuolar compartment. This recycling is mediated by retromer, a cytosolic coat complex that comprises sorting nexins and a large heterotrimeric subunit. To analyse retromer-mediated VSR recycling, we have used a combination of immunoelectron and fluorescence microscopy to localize the retromer components sorting nexin 1 (SNX1) and sorting nexin 2a (SNX2a) and the vacuolar sorting protein VPS29p. All retromer components localize to the trans-Golgi network (TGN), which is considered to represent the early endosome of plants. In addition, we show that inhibition of retromer function in vivo by expression of SNX1 or SNX2a mutants as well as transient RNAi knockdown of all sorting nexins led to accumulation of the VSR BP80 at the TGN. Quantitative protein transport studies and live-cell imaging using fluorescent vacuolar cargo molecules revealed that arrival of these VSR ligands at the vacuole is not affected under these conditions. Based on these findings, we propose that the TGN is the location of retromer-mediated recycling of VSRs, and that transport towards the lytic vacuole downstream of the TGN is receptor-independent and occurs via maturation, similar to transition of the early endosome into the late endosome in mammalian cells.
真核细胞分泌途径中的受体介导的分拣过程依赖于完成运输后受体再循环的机制。基于这一原理,植物液泡分拣受体(VSRs)被认为在与受体-配体复合物解离后在液泡前区室中再循环。这种再循环是由 retromer 介导的,retromer 是一种包含分选连接蛋白和一个大的异源三聚体亚基的细胞溶质包被复合物。为了分析 retromer 介导的 VSR 再循环,我们使用免疫电子显微镜和荧光显微镜组合来定位 retromer 成分分选连接蛋白 1(SNX1)和分选连接蛋白 2a(SNX2a)和液泡分拣蛋白 VPS29p。所有 retromer 成分都定位于高尔基体中转体(TGN),TGN 被认为代表植物的早期内体。此外,我们表明,通过表达 SNX1 或 SNX2a 突变体或所有分选连接蛋白的瞬时 RNAi 敲低在体内抑制 retromer 功能导致 VSR BP80 在 TGN 处积累。定量蛋白质运输研究和使用荧光液泡货物分子的活细胞成像表明,在这些条件下,这些 VSR 配体到达液泡的情况不受影响。基于这些发现,我们提出 TGN 是 VSR 再循环的 retromer 介导的位置,并且 TGN 下游的溶酶体的运输是受体非依赖性的,并且通过成熟发生,类似于哺乳动物细胞中早期内体向晚期内体的转变。