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Retromer 亚基 VPS35A 和 VPS29 介导拟南芥前液泡区隔(PVC)的功能。

Retromer subunits VPS35A and VPS29 mediate prevacuolar compartment (PVC) function in Arabidopsis.

机构信息

Mendel Centre for Plant Genomics and Proteomics, Central European Institute of Technology (CEITEC), Masaryk University (MU), Kamenice 5, CZ-625 00, Brno, Czech Republic.

出版信息

Mol Plant. 2013 Nov;6(6):1849-62. doi: 10.1093/mp/sst044. Epub 2013 Jun 14.

DOI:10.1093/mp/sst044
PMID:23770835
Abstract

Intracellular protein routing is mediated by vesicular transport which is tightly regulated in eukaryotes. The protein and lipid homeostasis depends on coordinated delivery of de novo synthesized or recycled cargoes to the plasma membrane by exocytosis and their subsequent removal by rerouting them for recycling or degradation. Here, we report the characterization of protein affected trafficking 3 (pat3) mutant that we identified by an epifluorescence-based forward genetic screen for mutants defective in subcellular distribution of Arabidopsis auxin transporter PIN1-GFP. While pat3 displays largely normal plant morphology and development in nutrient-rich conditions, it shows strong ectopic intracellular accumulations of different plasma membrane cargoes in structures that resemble prevacuolar compartments (PVC) with an aberrant morphology. Genetic mapping revealed that pat3 is defective in vacuolar protein sorting 35A (VPS35A), a putative subunit of the retromer complex that mediates retrograde trafficking between the PVC and trans-Golgi network. Similarly, a mutant defective in another retromer subunit, vps29, shows comparable subcellular defects in PVC morphology and protein accumulation. Thus, our data provide evidence that the retromer components VPS35A and VPS29 are essential for normal PVC morphology and normal trafficking of plasma membrane proteins in plants. In addition, we show that, out of the three VPS35 retromer subunits present in Arabidopsis thaliana genome, the VPS35 homolog A plays a prevailing role in trafficking to the lytic vacuole, presenting another level of complexity in the retromer-dependent vacuolar sorting.

摘要

细胞内蛋白质运输是由小泡运输介导的,真核生物中小泡运输受到严格调控。蛋白质和脂质的稳态依赖于通过胞吐作用将新合成或回收的货物协调递送到质膜,并通过将其重新路由用于回收或降解来去除它们。在这里,我们报告了 pat3 突变体的特征,该突变体是通过基于荧光的正向遗传筛选鉴定的,该筛选针对的是在拟南芥生长素转运蛋白 PIN1-GFP 亚细胞分布中缺陷的突变体。虽然 pat3 在营养丰富的条件下表现出基本正常的植物形态和发育,但它显示出不同质膜货物的强烈异位细胞内积累,这些货物在结构上类似于前液泡区隔(PVC),形态异常。遗传图谱显示,pat3 缺陷于液泡蛋白分选 35A(VPS35A),VPS35A 是一种假定的逆行转运体复合物的亚基,该复合物介导 PVC 和反式高尔基体网络之间的逆行运输。同样,另一个逆行转运体亚基 vps29 的突变体也显示出类似的 PVC 形态和蛋白质积累的亚细胞缺陷。因此,我们的数据提供了证据表明,逆行转运体组件 VPS35A 和 VPS29 对于正常的 PVC 形态和植物质膜蛋白的正常运输是必不可少的。此外,我们还表明,在拟南芥基因组中存在的三个 VPS35 逆行转运体亚基中,VPS35 同源物 A 在向溶酶体的运输中起着主导作用,这在逆行转运体依赖的液泡分选中增加了另一个复杂层次。

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