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在盘基网柄菌自噬体形成过程中,Vmp1调节磷脂酰肌醇3-磷酸(PtdIns3P)信号传导。

Vmp1 regulates PtdIns3P signaling during autophagosome formation in Dictyostelium discoideum.

作者信息

Calvo-Garrido Javier, King Jason S, Muñoz-Braceras Sandra, Escalante Ricardo

机构信息

Instituto de Investigaciones Biomédicas Alberto Sols, C.S.I.C./U.A.M., Madrid, 28029, Spain.

出版信息

Traffic. 2014 Nov;15(11):1235-46. doi: 10.1111/tra.12210. Epub 2014 Sep 12.

Abstract

Generation and turnover of phosphatidylinositol 3-phosphate (PtdIns3P) signaling is essential for autophagosome formation and other membrane traffic processes. In both Dictyostelium discoideum and mammalian cells, autophagosomes are formed from specialized regions of the endoplasmic reticulum (ER), called omegasomes, which are enriched in the signaling lipid PtdIns3P. Vacuole membrane protein 1 (Vmp1) is a multispanning membrane protein localized at the ER that is required for autophagosome formation. There are conflicting reports in the literature as to whether Vmp1 is strictly required or not for autophagy-related PtdIns3P signaling and its hierarchical relationship with Atg1 and PI3K. We have now addressed these questions in the Dictyostelium model. We show that Dictyostelium cells lacking Vmp1 have elevated and aberrant PtdIns3P signaling on the ER, resulting in an increased and persistent recruitment of Atg18 and other autophagic proteins. This indicates that Vmp1 is not strictly essential for the generation of PtdIns3P signaling but rather suggests a role in the correct turnover or modulation of this signaling. Of interest, these PtdIns3P-enriched regions of the ER surround ubiquitinated protein aggregates but are unable to form functional autophagosomes. vmp1 null cells also have additional defects in macropinocytosis and growth, which are not shared by other autophagy mutants. Remarkably, we show that these defects and also the aberrant PtdIns3P distribution are largely suppressed by the concomitant loss of Atg1, indicating that aberrant autophagic signaling on the ER inhibits macropinocytosis. These results suggest that Atg1 functions upstream of Vmp1 in this signaling pathway and demonstrates a previously unappreciated link between abnormal autophagy signaling and macropinocytosis.

摘要

磷脂酰肌醇3-磷酸(PtdIns3P)信号的产生和周转对于自噬体形成及其他膜运输过程至关重要。在盘基网柄菌和哺乳动物细胞中,自噬体均由内质网(ER)的特化区域形成,这些区域称为ω小体,富含信号脂质PtdIns3P。液泡膜蛋白1(Vmp1)是一种多跨膜蛋白,定位于内质网,是自噬体形成所必需的。关于Vmp1对于自噬相关的PtdIns3P信号是否严格必需及其与Atg1和PI3K的层级关系,文献中有相互矛盾的报道。我们现在在盘基网柄菌模型中解决了这些问题。我们发现,缺乏Vmp1的盘基网柄菌细胞在内质网上具有升高且异常的PtdIns3P信号,导致Atg18和其他自噬蛋白的募集增加且持续存在。这表明Vmp1对于PtdIns3P信号的产生并非严格必需,而是提示其在该信号的正确周转或调节中发挥作用。有趣的是,这些内质网富含PtdIns3P的区域围绕着泛素化蛋白聚集体,但无法形成功能性自噬体。vmp1基因敲除细胞在巨胞饮作用和生长方面也存在其他缺陷,而其他自噬突变体则没有这些缺陷。值得注意的是,我们发现这些缺陷以及异常的PtdIns3P分布在很大程度上被Atg1的同时缺失所抑制,这表明内质网上异常的自噬信号抑制了巨胞饮作用。这些结果表明,在该信号通路中Atg1在Vmp1的上游发挥作用,并证明了异常自噬信号与巨胞饮作用之间以前未被认识到的联系。

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