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首页> 外文期刊>Cell Regulation >A Highlights from MBoC Selection: Syndapin/SDPN-1 is required for endocytic recycling and endosomal actin association in the Caenorhabditis elegans intestine
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A Highlights from MBoC Selection: Syndapin/SDPN-1 is required for endocytic recycling and endosomal actin association in the Caenorhabditis elegans intestine

机译:MBoC选择的亮点:秀丽隐杆线虫肠内的内吞再循环和内体肌动蛋白缔合需要Syndapin / SDPN-1

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摘要

Syndapin/pascin-family F-BAR domain proteins bind directly to membrane lipids and are associated with actin dynamics at the plasma membrane. Previous reports also implicated mammalian syndapin 2 in endosome function during receptor recycling, but precise analysis of a putative recycling function for syndapin in mammalian systems is difficult because of its effects on the earlier step of endocytic uptake and potential redundancy among the three separate genes that encode mammalian syndapin isoforms. Here we analyze the endocytic transport function of the only Caenorhabditis elegans syndapin, SDPN-1. We find that SDPN-1 is a resident protein of the early and basolateral recycling endosomes in the C. elegans intestinal epithelium, and sdpn-1 deletion mutants display phenotypes indicating a block in basolateral recycling transport. sdpn-1 mutants accumulate abnormal endosomes positive for early endosome and recycling endosome markers that are normally separate, and such endosomes accumulate high levels of basolateral recycling cargo. Furthermore, we observed strong colocalization of endosomal SDPN-1 with the F-actin biosensor Lifeact and found that loss of SDPN-1 greatly reduced Lifeact accumulation on early endosomes. Taken together, our results provide strong evidence for an in vivo function of syndapin in endocytic recycling and suggest that syndapin promotes transport via endosomal fission.
机译:Syndapin / pascin家族F-BAR结构域蛋白直接与膜脂质结合,并与质膜上的肌动蛋白动力学相关。先前的报道还暗示哺乳动物syndapin 2在受体回收过程中的内体功能,但是很难对哺乳动物系统中syndapin的假定回收功能进行精确分析,因为它对内吞摄取的较早步骤有影响,并且在编码这三个基因的三个基因中可能存在冗余哺乳动物的syndapin亚型。在这里,我们分析了唯一的秀丽隐杆线虫syndapin,SDPN-1的内吞运输功能。我们发现SDPN-1是秀丽隐杆线虫肠上皮细胞的早期和基底外侧回收内体的常驻蛋白,并且sdpn-1缺失突变体显示表型,表明基底外侧回收运输中存在阻滞。 sdpn-1突变体积聚了早期内体阳性的异常内体,并回收了通常是分开的内体标记,这些内体积聚了大量的基底外侧回收货物。此外,我们观察到内吞性SDPN-1与F-肌动蛋白生物传感器Lifeact的强烈共定位,并发现SDPN-1的丧失大大降低了Lifeact在早期内体上的积累。综上所述,我们的结果为辛达平在细胞内吞再循环中的体内功能提供了有力证据,并表明辛达平可促进通过内体裂变的转运。

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