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Bestrophins在眼上皮中的功能作用。

Functional roles of bestrophins in ocular epithelia.

作者信息

Marmorstein Alan D, Cross Harold E, Peachey Neal S

机构信息

Department of Ophthalmology and Vision Science, University of Arizona, Tucson, AZ 85711, USA.

出版信息

Prog Retin Eye Res. 2009 May;28(3):206-26. doi: 10.1016/j.preteyeres.2009.04.004. Epub 2009 May 4.

Abstract

There are four members of the bestrophin family of proteins in the human genome, of which two are known to be expressed in the eye. The gene BEST1 (formerly VMD2) which encodes the protein bestrophin-1 (Best1) was first identified in 1998. Mutations in this gene have now been associated with four clinically distinguishable human eye diseases, collectively referred to as "bestrophinopathies". Over the last decade, laboratories have sought to understand how Best1 mutations could result in eye diseases that range in presentation from macular degeneration to nanophthalmos. The majority of our knowledge comes from studies that have sought to understand how Best1 mutations or dysfunction could induce the classical symptoms of the most common of these diseases: Best vitelliform macular dystrophy (BVMD). BVMD is a dominant trait that is characterized electrophysiologically by a diminished electrooculogram light peak with a normal clinical electroretinogram. This together with the localization of Best1 to the retinal pigment epithelium (RPE) basolateral plasma membrane and data from heterologous expression studies, have led to the proposal that Best1 generates the light peak, and that bestrophins are a family of Ca(2+) activated Cl(-) channels (CaCCs). However, data from Best1 knock-out and knock-in mice, coupled with the recent discovery of a recessive bestrophinopathy suggest that Best1 does not generate the light peak. Recently Best2 was found to be expressed in non-pigmented epithelia in the ciliary body. However, aqueous dynamics in Best2 knock-out mice do not support a role for Best2 as a Cl(-) channel. Thus, the purported CaCC function of the bestrophins and how loss of this function relates to clinical disease needs to be reassessed. In this article, we examine data obtained from tissue-type and animal models and discuss the current state of bestrophin research, what roles Best1 and Best2 may play in ocular epithelia and ocular electrophysiology, and how perturbation of these functions may result in disease.

摘要

人类基因组中有四种Bestrophin蛋白家族成员,其中两种已知在眼睛中表达。编码Bestrophin-1(Best1)蛋白的BEST1基因(以前称为VMD2)于1998年首次被鉴定。该基因的突变现在已与四种临床上可区分的人类眼部疾病相关,统称为“Bestrophin病”。在过去十年中,实验室一直在试图了解Best1突变如何导致从黄斑变性到小眼球症等一系列表现的眼部疾病。我们的大部分知识来自于试图了解Best1突变或功能障碍如何诱发这些疾病中最常见的经典症状的研究:Best卵黄样黄斑营养不良(BVMD)。BVMD是一种显性性状,其电生理特征是眼电图光峰降低,而临床视网膜电图正常。这与Best1在视网膜色素上皮(RPE)基底外侧质膜的定位以及异源表达研究的数据一起,导致了这样的提议,即Best1产生光峰,并且Bestrophin是Ca(2+)激活的Cl(-)通道(CaCCs)家族。然而,来自Best1基因敲除和基因敲入小鼠的数据,以及最近发现的一种隐性Bestrophin病表明,Best1不会产生光峰。最近发现Best2在睫状体的无色素上皮中表达。然而,Best2基因敲除小鼠的房水动力学不支持Best2作为Cl(-)通道的作用。因此,Bestrophin的所谓CaCC功能以及这种功能丧失与临床疾病的关系需要重新评估。在本文中,我们检查了从组织类型和动物模型获得的数据,并讨论了Bestrophin研究的现状,Best1和Best2在眼上皮和眼电生理学中可能发挥的作用,以及这些功能的扰动如何导致疾病。

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