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多个PV1二聚体存在于同一个气孔或小孔隔膜中。

Multiple PV1 dimers reside in the same stomatal or fenestral diaphragm.

作者信息

Stan Radu V

机构信息

Department of Cellular and Molecular Medicine, University of California-San Diego, La Jolla, CA 92093-0651, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2004 Apr;286(4):H1347-53. doi: 10.1152/ajpheart.00909.2003. Epub 2003 Nov 20.

Abstract

Several of the endothelium-specific structures that have been involved in microvascular permeability [such as caveolae, transendothelial channels (TECs), vesiculovacuolar organelles (VVOs), and fenestrae] can be provided with either a stomatal or fenestral diaphragm. In the case of fenestrae, the diaphragm has the presumed function of creating a permselective barrier for solutes from blood plasma and interstitium. PV1 is an endothelium-specific integral membrane glycoprotein that is associated with both the stomatal diaphragms of caveolae, TECs, and VVOs as well as the diaphragms of endothelial fenestrae. The intimate structure of these diaphragms has been shown to consist of a meshwork formed by radial fibrils. We have recently shown that PV1 is a key structural element of both types of diaphragms, with its expression being sufficient to form de novo stomatal and fenestral diaphragms in both endothelial and nonendothelial cell types in culture. We have further tested the role of PV1 in the structure of the diaphragms and demonstrate here that multiple PV1 homodimers reside in close proximity within the same diaphragm. Our data bring further support to the paradigm by which PV1 dimers would form the fibrils of the diaphragms with a function in the microvascular permeability.

摘要

一些参与微血管通透性的内皮细胞特异性结构(如小窝、跨内皮通道(TECs)、囊泡-液泡细胞器(VVOs)和窗孔)都可以配备气孔或窗孔隔膜。就窗孔而言,隔膜被认为具有为血浆和间质中的溶质创造一个选择通透性屏障的功能。PV1是一种内皮细胞特异性整合膜糖蛋白,它与小窝、TECs和VVOs的气孔隔膜以及内皮窗孔的隔膜相关联。这些隔膜的精细结构已被证明由放射状纤维形成的网络组成。我们最近表明,PV1是这两种类型隔膜的关键结构元件,其表达足以在培养的内皮细胞和非内皮细胞类型中从头形成气孔和窗孔隔膜。我们进一步测试了PV1在隔膜结构中的作用,并在此证明多个PV1同型二聚体在同一隔膜内紧密相邻存在。我们的数据进一步支持了PV1二聚体形成隔膜纤维并在微血管通透性中起作用的范例。

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