Strochlic Todd I, Setty Thanuja Gangi, Sitaram Anand, Burd Christopher G
Department of Cell and Developmental Biology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
J Cell Biol. 2007 Apr 9;177(1):115-25. doi: 10.1083/jcb.200609161.
Amajor function of the endocytic system is the sorting of cargo to various organelles. Endocytic sorting of the yeast reductive iron transporter, which is composed of the Fet3 and Ftr1 proteins, is regulated by available iron. When iron is provided to iron-starved cells, Fet3p-Ftr1p is targeted to the lysosome-like vacuole and degraded. In contrast, when iron is not available, Fet3p-Ftr1p is maintained on the plasma membrane via an endocytic recycling pathway requiring the sorting nexin Grd19/Snx3p, the pentameric retromer complex, and the Ypt6p Golgi Rab GTPase module. A recycling signal in Ftr1p was identified and found to bind directly to Grd19/Snx3p. Retromer and Grd19/Snx3p partially colocalize to tubular endosomes, where they are physically associated. After export from the endosome, Fet3p-Ftr1p transits through the Golgi apparatus for resecretion. Thus, Grd19/Snx3p, functions as a cargo-specific adapter for the retromer complex, establishing a precedent for a mechanism by which sorting nexins expand the repertoire of retromer-dependent cargos.
内吞系统的一个主要功能是将货物分拣到各种细胞器中。酵母还原铁转运蛋白由Fet3和Ftr1蛋白组成,其在内吞过程中的分拣受可利用铁的调节。当向缺铁细胞提供铁时,Fet3p-Ftr1p靶向溶酶体样液泡并被降解。相反,当没有铁时,Fet3p-Ftr1p通过内吞循环途径维持在质膜上,该途径需要分拣连接蛋白Grd19/Snx3p、五聚体逆向转运复合物和Ypt6p高尔基体Rab GTP酶模块。在Ftr1p中鉴定出一个循环信号,发现它直接与Grd19/Snx3p结合。逆向转运复合物和Grd19/Snx3p部分共定位于管状内体,它们在那里存在物理关联。从内体输出后,Fet3p-Ftr1p通过高尔基体进行再分泌。因此,Grd19/Snx3p作为逆向转运复合物的货物特异性衔接蛋白,为分拣连接蛋白扩展逆向转运复合物依赖性货物种类的机制开创了先例。