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人晶状体中Cx46和Cx50年龄依赖性截短的鉴定及功能评估

Identification and Functional Assessment of Age-Dependent Truncations to Cx46 and Cx50 in the Human Lens.

作者信息

Slavi Nefeli, Wang Zhen, Harvey Lucas, Schey Kevin L, Srinivas Miduturu

机构信息

Department of Biological and Vision Sciences and the Graduate Center for Vision Research, SUNY College of Optometry, New York, New York, United States.

Department of Biochemistry and Mass Spectrometry Research Center Vanderbilt University School of Medicine, Nashville, Tennessee, United States.

出版信息

Invest Ophthalmol Vis Sci. 2016 Oct 1;57(13):5714-5722. doi: 10.1167/iovs.16-19698.

Abstract

PURPOSE

Many proteins in the lens undergo extensive posttranslational modifications (PTMs) with age, leading to alterations in their function. The extent to which lens gap junction proteins, Cx46 and Cx50, accumulate PTMs with aging is not known. In this study, we identified truncations in Cx46 and Cx50 in the human lens using mass spectrometry. We also examined the effect of truncations on channel function using electrophysiological measurements.

METHODS

Human lenses were dissected into cortex, outer nucleus, and nucleus regions, and fiber cell membranes were subjected to trypsin digestion. Tryptic peptides were analyzed by liquid chromatography (LC)-electrospray tandem mass spectrometry (ESI/MS/MS). Effects of truncations on channel conductance, permeability, and gating were assessed in transfected cells.

RESULTS

Cleavage sites were identified in the C-terminus, the cytoplasmic loop, and the N-terminus of Cx46 and Cx50. Levels of C-terminal truncations, which were found at residues 238 to 251 in Cx46 and at residues 238 to 253 and 274 to 284 in Cx50, were similar in different lens regions. In contrast, levels of truncations in cytoplasmic loop and N-terminal domains of Cx46 and Cx50 increased dramatically from outer cortex to nucleus. Most of the C-terminally truncated proteins were functional, whereas truncations in the cytoplasmic loop did not result in the formation of functional channels.

CONCLUSIONS

Accumulation of cytoplasmic loop and N-terminal truncations in the core might lead to decreases in coupling with age. This reduction is expected to lead to an increase in intracellular calcium and a decrease in levels of glutathione in the nucleus. These changes may ultimately lead to age-related nuclear cataracts.

摘要

目的

随着年龄增长,晶状体中的许多蛋白质会经历广泛的翻译后修饰(PTM),从而导致其功能改变。晶状体间隙连接蛋白Cx46和Cx50随着衰老积累PTM的程度尚不清楚。在本研究中,我们使用质谱法鉴定了人晶状体中Cx46和Cx50的截短情况。我们还使用电生理测量方法研究了截短对通道功能的影响。

方法

将人晶状体解剖为皮质、外核和核区域,并对纤维细胞膜进行胰蛋白酶消化。通过液相色谱(LC)-电喷雾串联质谱(ESI/MS/MS)分析胰蛋白酶肽段。在转染细胞中评估截短对通道电导、通透性和门控的影响。

结果

在Cx46和Cx50的C末端、细胞质环和N末端鉴定出切割位点。C末端截短水平在Cx46的238至251位残基以及Cx50的238至253位残基和274至284位残基处被发现,在不同晶状体区域中相似。相比之下,Cx46和Cx50细胞质环和N末端结构域的截短水平从外皮质到核显著增加。大多数C末端截短的蛋白质具有功能,而细胞质环中的截短不会导致功能性通道的形成。

结论

核心区域细胞质环和N末端截短的积累可能导致随着年龄增长耦合减少。这种减少预计会导致细胞内钙增加以及核中谷胱甘肽水平降低。这些变化最终可能导致年龄相关性核性白内障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5eea/5089213/38f089e2c5bf/i1552-5783-57-13-5714-f02.jpg

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