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CCT2 突变导致伴侣复合物不稳定引起莱伯先天性黑矇。

CCT2 Mutations Evoke Leber Congenital Amaurosis due to Chaperone Complex Instability.

机构信息

Division of Molecular and Cellular Biology, National Institute of Sensory Organs, National Hospital Organization Tokyo Medical Center, Tokyo, Japan.

Ningxia Eye Hospital, Ningxia People's Hospital, Ningxia, China.

出版信息

Sci Rep. 2016 Sep 20;6:33742. doi: 10.1038/srep33742.

Abstract

Leber congenital amaurosis (LCA) is a hereditary early-onset retinal dystrophy that is accompanied by severe macular degeneration. In this study, novel compound heterozygous mutations were identified as LCA-causative in chaperonin-containing TCP-1, subunit 2 (CCT2), a gene that encodes the molecular chaperone protein, CCTβ. The zebrafish mutants of CCTβ are known to exhibit the eye phenotype while its mutation and association with human disease have been unknown. The CCT proteins (CCT α-θ) forms ring complex for its chaperon function. The LCA mutants of CCTβ, T400P and R516H, are biochemically instable and the affinity for the adjacent subunit, CCTγ, was affected distinctly in both mutants. The patient-derived induced pluripotent stem cells (iPSCs), carrying these CCTβ mutants, were less proliferative than the control iPSCs. Decreased proliferation under Cct2 knockdown in 661W cells was significantly rescued by wild-type CCTβ expression. However, the expression of T400P and R516H didn't exhibit the significant effect. In mouse retina, both CCTβ and CCTγ are expressed in the retinal ganglion cells and connecting cilium of photoreceptor cells. The Cct2 knockdown decreased its major client protein, transducing β1 (Gβ1). Here we report the novel LCA mutations in CCTβ and the impact of chaperon disability by these mutations in cellular biology.

摘要

Leber 先天性黑蒙(LCA)是一种遗传性的早期发病的视网膜营养不良,伴有严重的黄斑变性。在这项研究中,发现了一种新的复合杂合突变,这种突变是伴侣蛋白包含的 TCP-1 亚基 2(CCT2)的致病突变,该基因编码分子伴侣蛋白 CCTβ。众所周知,斑马鱼 CCTβ 的突变体表现出眼部表型,但其突变及其与人类疾病的关联尚不清楚。CCT 蛋白(CCTα-θ)形成环形复合物发挥其伴侣功能。CCTβ 的 LCA 突变体 T400P 和 R516H 在生化上不稳定,并且这两种突变体对相邻亚基 CCTγ 的亲和力明显受到影响。携带这些 CCTβ 突变体的患者来源诱导多能干细胞(iPSCs)的增殖能力低于对照 iPSCs。在 661W 细胞中敲低 Cct2 后,野生型 CCTβ 的表达显著挽救了增殖能力的下降。然而,T400P 和 R516H 的表达并没有表现出显著的效果。在小鼠视网膜中,CCTβ 和 CCTγ 都在视网膜神经节细胞和光感受器细胞的连接纤毛中表达。Cct2 的敲低降低了其主要的客户蛋白转导β1(Gβ1)。在这里,我们报告了 CCTβ 中的新 LCA 突变以及这些突变对细胞生物学中伴侣功能障碍的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2be7/5028737/7121f7c53609/srep33742-f1.jpg

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