Wagner Krystina, Smylla Thomas K, Lampe Marko, Krieg Jana, Huber Armin
Department of Biochemistry, University of Hohenheim, Institute of Biology, Stuttgart, Germany.
European Molecular Biology Laboratory, Advanced Light Microscopy Core Facility, Heidelberg, Germany.
Traffic. 2022 Jan;23(1):42-62. doi: 10.1111/tra.12824. Epub 2021 Nov 10.
Plasma membrane protein trafficking is of fundamental importance for cell function and cell integrity of neurons and includes regulated protein recycling. In this work, we report a novel role of the endoplasmic reticulum (ER) for protein recycling as discovered in trafficking studies of the ion channel TRPL in photoreceptor cells of Drosophila. TRPL is located within the rhabdomeric membrane from where it is endocytosed upon light stimulation and stored in the cell body. Conventional immunohistochemistry as well as stimulated emission depletion super-resolution microscopy revealed TRPL storage at the ER after illumination, suggesting an unusual recycling route of TRPL. Our results also imply that both phospholipase D (PLD) and retromer complex are required for correct recycling of TRPL to the rhabdomeric membrane. Loss of PLD activity in PLD mutants results in enhanced degradation of TRPL. In the retromer mutant vps35 , TRPL is trapped in a Rab5-positive compartment. Evidenced by epistatic analysis in the double mutant PLD vps35 , PLD activity precedes retromer function. We propose a model in which PLD and retromer function play key roles in the transport of TRPL to an ER enriched compartment.
质膜蛋白运输对于神经元的细胞功能和细胞完整性至关重要,其中包括受调控的蛋白回收利用。在这项研究中,我们报道了内质网(ER)在蛋白回收利用方面的新作用,这是在果蝇光感受器细胞中对离子通道TRPL进行运输研究时发现的。TRPL位于微绒毛膜内,光照刺激后会从这里被内吞,并储存在细胞体中。传统免疫组织化学以及受激发射损耗超分辨率显微镜显示,光照后TRPL储存在内质网中,这表明TRPL存在一条不同寻常的回收途径。我们的结果还表明,磷脂酶D(PLD)和逆转录复合物对于TRPL正确回收至微绒毛膜都是必需的。PLD突变体中PLD活性的丧失导致TRPL降解增强。在逆转录复合物突变体vps35中,TRPL被困在Rab5阳性区室中。双突变体PLD vps35的上位性分析表明,PLD活性先于逆转录复合物发挥作用。我们提出了一个模型,其中PLD和逆转录复合物的功能在将TRPL运输至富含内质网的区室中起关键作用。