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内体 Na+(K+)/H+ 交换器 Nhx1/Vps44 独立于多泡体形成的下游发挥作用。

Endosomal Na+ (K+)/H+ exchanger Nhx1/Vps44 functions independently and downstream of multivesicular body formation.

机构信息

Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205; Department of Biology, Concordia University, Montréal, Quebec H3G 1M8, Canada.

出版信息

J Biol Chem. 2011 Dec 23;286(51):44067-44077. doi: 10.1074/jbc.M111.282319. Epub 2011 Oct 13.

Abstract

The multivesicular body (MVB) is an endosomal intermediate containing intralumenal vesicles destined for membrane protein degradation in the lysosome. In Saccharomyces cerevisiae, the MVB pathway is composed of 17 evolutionarily conserved ESCRT (endosomal sorting complex required for transport) genes grouped by their vacuole protein sorting Class E mutant phenotypes. Only one integral membrane protein, the endosomal Na+ (K+)/H+ exchanger Nhx1/Vps44, has been assigned to this class, but its role in the MVB pathway has not been directly tested. Herein, we first evaluated the link between Nhx1 and the ESCRT proteins and then used an unbiased phenomics approach to probe the cellular role of Nhx1. Select ESCRT mutants (vps36Δ, vps20Δ, snf7Δ, and bro1Δ) with defects in cargo packaging and intralumenal vesicle formation shared multiple growth phenotypes with nhx1Δ. However, analysis of cellular trafficking and ultrastructural examination by electron microscopy revealed that nhx1Δ cells retain the ability to sort cargo into intralumenal vesicles. In addition, we excluded a role for Nhx1 in Snf7/Bro1-mediated cargo deubiquitylation and Rim101 response to pH stress. Genetic epistasis experiments provided evidence that NHX1 and ESCRT genes function in parallel. A genome-wide screen for single gene deletion mutants that phenocopy nhx1Δ yielded a limited gene set enriched for endosome fusion function, including Rab signaling and actin cytoskeleton reorganization. In light of these findings and the absence of the so-called Class E compartment in nhx1Δ, we eliminated a requirement for Nhx1 in MVB formation and suggest an alternative post-ESCRT role in endosomal membrane fusion.

摘要

多泡体(MVB)是一种含有腔内囊泡的内体中间产物,这些囊泡最终在溶酶体中被膜蛋白降解。在酿酒酵母中,MVB 途径由 17 个进化上保守的 ESCRT(内体分选复合物必需的运输)基因组成,这些基因根据它们在液泡蛋白分选中的 E 突变表型进行分组。只有一种完整的膜蛋白,即内体 Na+(K+)/H+交换器 Nhx1/Vps44,被分配到这个类别,但它在 MVB 途径中的作用尚未被直接测试。在这里,我们首先评估了 Nhx1 与 ESCRT 蛋白之间的联系,然后使用一种无偏的表型方法来探测 Nhx1 的细胞作用。选择 ESCRT 突变体(vps36Δ、vps20Δ、snf7Δ 和 bro1Δ),它们在货物包装和腔内囊泡形成方面存在缺陷,与 nhx1Δ 具有多种共同的生长表型。然而,细胞内运输和电子显微镜的超微结构分析显示,nhx1Δ 细胞仍然能够将货物分拣到腔内囊泡中。此外,我们排除了 Nhx1 在 Snf7/Bro1 介导的货物去泛素化和 Rim101 对 pH 应激的反应中的作用。遗传上位性实验提供了证据表明 NHX1 和 ESCRT 基因平行发挥作用。对 nhx1Δ 表型模拟的单基因突变体的全基因组筛选产生了一组有限的基因集,这些基因集富集了内体融合功能,包括 Rab 信号和肌动蛋白细胞骨架重组。鉴于这些发现以及在 nhx1Δ 中缺乏所谓的 E 类隔室,我们排除了 Nhx1 在 MVB 形成中的作用,并提出了在内体膜融合中 ESCRT 后替代作用的假设。

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