Gershlick David C, Lousa Carine de Marcos, Foresti Ombretta, Lee Andrew J, Pereira Estela A, daSilva Luis L P, Bottanelli Francesca, Denecke Jurgen
Centre for Plant Sciences, School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, United Kingdom.
Plant Cell. 2014 Mar;26(3):1308-29. doi: 10.1105/tpc.113.122226. Epub 2014 Mar 18.
The cycling of vacuolar sorting receptors (VSRs) between early and late secretory pathway compartments is regulated by signals in the cytosolic tail, but the exact pathway is controversial. Here, we show that receptor targeting in tobacco (Nicotiana tabacum) initially involves a canonical coat protein complex II-dependent endoplasmic reticulum-to-Golgi bulk flow route and that VSR-ligand interactions in the cis-Golgi play an important role in vacuolar sorting. We also show that a conserved Glu is required but not sufficient for rate-limiting YXX-mediated receptor trafficking. Protein-protein interaction studies show that the VSR tail interacts with the μ-subunits of plant or mammalian clathrin adaptor complex AP1 and plant AP4 but not that of plant and mammalian AP2. Mutants causing a detour of full-length receptors via the cell surface invariantly cause the secretion of VSR ligands. Therefore, we propose that cycling via the plasma membrane is unlikely to play a role in biosynthetic vacuolar sorting under normal physiological conditions and that the conserved Ile-Met motif is mainly used to recover mistargeted receptors. This occurs via a fundamentally different pathway from the prevacuolar compartment that does not mediate recycling. The role of clathrin and clathrin-independent pathways in vacuolar targeting is discussed.
液泡分选受体(VSRs)在早期和晚期分泌途径区室之间的循环受胞质尾部信号调控,但具体途径存在争议。在此,我们表明烟草(Nicotiana tabacum)中受体的靶向最初涉及一条典型的依赖于II型被膜小泡蛋白复合体的从内质网到高尔基体的整体运输途径,并且顺面高尔基体中的VSR-配体相互作用在液泡分选过程中发挥重要作用。我们还表明,一个保守的谷氨酸对于限速的YXX介导的受体运输是必需的,但并不充分。蛋白质-蛋白质相互作用研究表明,VSR尾部与植物或哺乳动物网格蛋白衔接复合体AP1的μ亚基以及植物AP4相互作用,但不与植物和哺乳动物的AP2相互作用。导致全长受体通过细胞表面绕道的突变体总是会导致VSR配体的分泌。因此,我们提出在正常生理条件下,通过质膜的循环不太可能在生物合成液泡分选过程中发挥作用,并且保守的Ile-Met基序主要用于回收错误靶向的受体。这是通过一条与前液泡区室根本不同的途径发生的,前液泡区室不介导循环。文中讨论了网格蛋白和非网格蛋白途径在液泡靶向中的作用。