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睫状体疾病蛋白视网膜色素变性GTP酶调节因子与哺乳动物视网膜中肾源性视网膜病变相关蛋白的相互作用。

Interaction of ciliary disease protein retinitis pigmentosa GTPase regulator with nephronophthisis-associated proteins in mammalian retinas.

作者信息

Murga-Zamalloa Carlos A, Desai Nimit J, Hildebrandt Friedhelm, Khanna Hemant

机构信息

Department of Ophthalmology and Visual Sciences, Howard Hughes Medical Institute, University of Michigan, Ann Arbor, MI, USA.

出版信息

Mol Vis. 2010 Jul 17;16:1373-81.

Abstract

PURPOSE

Retinitis pigmentosa GTPase regulator (RPGR) is a cilia-centrosomal protein that frequently mutates in X-linked retinal degeneration and associated disorders. RPGR interacts with multiple ciliary proteins in the retina. Perturbations in the assembly of RPGR complexes are associated with retinal degeneration. This study was undertaken to delineate the composition and dissection of RPGR complexes in mammalian retinas.

METHODS

Immunoprecipitation of RPGR from ciliary fraction of bovine retina was performed, followed by mass spectrometry analysis. The glutathione S-transferase pull-down assay was performed to validate the interaction. Immunodepletion experiments were performed to dissect the partitioning of RPGR in different protein complexes in mammalian retinas.

RESULTS

We found that RPGR associates with a ciliary protein nephrocystin-4 (nephroretinin; NPHP4) that is mutated in nephronophthisis (NPH) and RP (Senior-Løken syndrome). This association is abolished in the Rpgr-knockout mouse retina. The RCC1-like domain of RPGR interacts with the N-terminal 316 amino acids of NPHP4. In the retina, RPGR also associates with NPHP1, an NPHP4-interacting protein; RPGR interacts directly with amino acids 243-586 of NPHP1. We further show that, in the retina, RPGR associates with and is partitioned in at least two different complexes with NPHP-associated proteins, (i) NPHP1, NPHP2, and NPHP5, and (ii) NPHP4, NPHP6, and NPHP8.

CONCLUSIONS

RPGR may regulate some complexes with NPHP proteins in the mammalian retina. The disruption of these complexes may contribute to the pathogenesis of retinal degeneration in X-linked RP and associated ciliary diseases.

摘要

目的

视网膜色素变性GTP酶调节蛋白(RPGR)是一种定位于纤毛和中心体的蛋白质,在X连锁视网膜变性及相关疾病中经常发生突变。RPGR在视网膜中与多种纤毛蛋白相互作用。RPGR复合物组装的扰动与视网膜变性有关。本研究旨在阐明哺乳动物视网膜中RPGR复合物的组成和剖析。

方法

对牛视网膜纤毛部分进行RPGR免疫沉淀,随后进行质谱分析。进行谷胱甘肽S-转移酶下拉试验以验证相互作用。进行免疫去除实验以剖析RPGR在哺乳动物视网膜不同蛋白质复合物中的分配情况。

结果

我们发现RPGR与一种纤毛蛋白肾囊肿蛋白-4(肾视网膜蛋白;NPHP4)相关联,该蛋白在肾单位肾痨(NPH)和视网膜色素变性(Senior-Løken综合征)中发生突变。在Rpgr基因敲除小鼠视网膜中这种关联消失。RPGR的RCC1样结构域与NPHP4的N端316个氨基酸相互作用。在视网膜中,RPGR还与NPHP1相关联,NPHP1是一种与NPHP4相互作用的蛋白质;RPGR直接与NPHP1的243-586位氨基酸相互作用。我们进一步表明,在视网膜中,RPGR与NPHP相关蛋白形成至少两种不同的复合物并在其中分配,(i)NPHP1、NPHP2和NPHP5,以及(ii)NPHP4、NPHP6和NPHP8。

结论

RPGR可能在哺乳动物视网膜中调节一些与NPHP蛋白相关的复合物。这些复合物的破坏可能导致X连锁视网膜色素变性及相关纤毛疾病中视网膜变性的发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72be/2905641/96883c212af2/mv-v16-1373-f1.jpg

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