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尿外泌体中的外排体和调节性GTP酶

The exocyst and regulatory GTPases in urinary exosomes.

作者信息

Chacon-Heszele Maria F, Choi Soo Young, Zuo Xiaofeng, Baek Jeong-In, Ward Chris, Lipschutz Joshua H

机构信息

Renal, Electrolyte and Hypertension Division, Department of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

Renal Division, Department of Medicine, Medical University of South Carolina, Charleston, South Carolina.

出版信息

Physiol Rep. 2014 Aug 19;2(8). doi: 10.14814/phy2.12116. Print 2014 Aug 1.

Abstract

Cilia, organelles that function as cellular antennae, are central to the pathogenesis of "ciliopathies", including various forms of polycystic kidney disease (PKD). To date, however, the molecular mechanisms controlling ciliogenesis and ciliary function remain incompletely understood. A recently proposed model of cell-cell communication, called "urocrine signaling", hypothesizes that a subset of membrane bound vesicles that are secreted into the urinary stream (termed exosome-like vesicles, or ELVs), carry cilia-specific proteins as cargo, interact with primary cilia, and affect downstream cellular functions. This study was undertaken to determine the role of the exocyst, a highly conserved eight-protein trafficking complex, in the secretion and/or retrieval of ELVs. We used Madin-Darby canine kidney (MDCK) cells expressing either Sec10-myc (a central component of the exocyst complex) or Smoothened-YFP (a ciliary protein found in ELVs) in experiments utilizing electron gold microscopy and live fluorescent microscopy, respectively. Additionally, human urinary exosomes were isolated via ultracentrifugation and subjected to mass-spectrometry-based proteomics analysis to determine the composition of ELVs. We found, as determined by EM, that the exocyst localizes to primary cilia, and is present in vesicles attached to the cilium. Furthermore, the entire exocyst complex, as well as most of its known regulatory GTPases, are present in human urinary ELVs. Finally, in living MDCK cells, ELVs appear to interact with primary cilia using spinning disc confocal microscopy. These data suggest that the exocyst complex, in addition to its role in ciliogenesis, is centrally involved in the secretion and/or retrieval of urinary ELVs.

摘要

纤毛作为细胞的触角发挥功能,是包括各种形式的多囊肾病(PKD)在内的“纤毛病”发病机制的核心。然而,迄今为止,控制纤毛发生和纤毛功能的分子机制仍未完全了解。最近提出的一种细胞间通讯模型,称为“尿分泌信号传导”,假设分泌到尿流中的一部分膜结合囊泡(称为外泌体样囊泡,或ELV)携带纤毛特异性蛋白作为货物,与初级纤毛相互作用,并影响下游细胞功能。本研究旨在确定外泌体(一种高度保守的由八种蛋白质组成的运输复合体)在ELV的分泌和/或回收中的作用。我们分别在利用电子金显微镜和实时荧光显微镜的实验中,使用了表达Sec10-myc(外泌体复合体的核心成分)或Smoothened-YFP(在ELV中发现的一种纤毛蛋白)的Madin-Darby犬肾(MDCK)细胞。此外,通过超速离心分离人尿外泌体,并进行基于质谱的蛋白质组学分析以确定ELV的组成。我们通过电子显微镜发现,外泌体定位于初级纤毛,并存在于附着在纤毛上的囊泡中。此外,整个人尿ELV中存在完整的外泌体复合体及其大部分已知的调节性GTP酶。最后,在活的MDCK细胞中,使用转盘共聚焦显微镜观察到ELV似乎与初级纤毛相互作用。这些数据表明,外泌体复合体除了在纤毛发生中发挥作用外,还在尿ELV的分泌和/或回收中起核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eff9/4246586/33c2f64fb469/phy2-2-e12116-g1.jpg

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