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一种用于鉴定新的潜在心脏闰盘蛋白的蛋白质组学方法。

A Proteomics Approach to Identify New Putative Cardiac Intercalated Disk Proteins.

作者信息

Soni Siddarth, Raaijmakers Antonia J A, Raaijmakers Linsey M, Damen J Mirjam A, van Stuijvenberg Leonie, Vos Marc A, Heck Albert J R, van Veen Toon A B, Scholten Arjen

机构信息

Dept of Medical Physiology, Division of Heart & Lungs, University Medical Centre Utrecht, Utrecht, The Netherlands.

Biomolecular Mass Spectrometry & Proteomics, Utrecht Institute for Pharmaceutical Sciences and Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands.

出版信息

PLoS One. 2016 May 5;11(5):e0152231. doi: 10.1371/journal.pone.0152231. eCollection 2016.

Abstract

AIMS

Synchronous beating of the heart is dependent on the efficient functioning of the cardiac intercalated disk (ID). The ID is composed of a complex protein network enabling electrical continuity and chemical communication between individual cardiomyocytes. Recently, several different studies have shed light on increasingly prevalent cardiac diseases involving the ID. Insufficient knowledge of its composition makes it difficult to study these disease mechanisms in more detail and therefore here we aim expand the ID proteome. Here, using a combination of general membrane enrichment, in-depth quantitative proteomics and an intracellular location driven bioinformatics approach, we aim to discover new putative ID proteins in rat ventricular tissue.

METHODS AND RESULTS

General membrane isolation, enriched amongst others also with ID proteins as based on presence of the established markers connexin-43 and n-cadherin, was performed using centrifugation. By mass spectrometry, we quantitatively evaluated the level of 3455 proteins in the enriched membrane fraction (EMF) and its counterpart, the soluble cytoplasmic fraction. These data were stringently filtered to generate a final set of 97 enriched, putative ID proteins. These included Cx43 and n-cadherin, but also many interesting novel candidates. We selected 4 candidates (Flotillin-2 (FLOT2), Nexilin (NEXN), Popeye-domain-containg-protein 2 (POPDC2) and thioredoxin-related-transmembrane-protein 2 (TMX2)) and confirmed their co-localization with n-cadherin in the ID of human and rat heart cryo-sections, and isolated dog cardiomyocytes.

CONCLUSION

The presented proteomics dataset of putative new ID proteins is a valuable resource for future research into this important molecular intersection of the heart.

摘要

目的

心脏的同步跳动依赖于心脏闰盘(ID)的有效功能。闰盘由复杂的蛋白质网络组成,使各个心肌细胞之间实现电连续性和化学通讯。最近,几项不同的研究揭示了越来越多涉及闰盘的常见心脏疾病。由于对其组成了解不足,难以更详细地研究这些疾病机制,因此我们旨在扩展闰盘蛋白质组。在此,我们结合通用膜富集、深度定量蛋白质组学和细胞内定位驱动的生物信息学方法,旨在在大鼠心室组织中发现新的假定闰盘蛋白。

方法与结果

采用离心法进行通用膜分离,基于已确定的标记物连接蛋白43和N-钙黏着蛋白的存在,闰盘蛋白也在其他物质中得到富集。通过质谱分析,我们定量评估了富集膜组分(EMF)及其对应物可溶性细胞质组分中3455种蛋白质的水平。对这些数据进行严格筛选,以生成最终的97种富集的假定闰盘蛋白集合。这些蛋白包括连接蛋白43和N-钙黏着蛋白,还有许多有趣的新候选蛋白。我们选择了4种候选蛋白(小窝蛋白-2(FLOT2)、纽带蛋白(NEXN)、含Popeye结构域蛋白2(POPDC2)和硫氧还蛋白相关跨膜蛋白2(TMX2)),并在人及大鼠心脏冰冻切片的闰盘以及分离的犬心肌细胞中证实了它们与N-钙黏着蛋白的共定位。

结论

所呈现的假定新闰盘蛋白的蛋白质组学数据集是未来研究心脏这一重要分子交叉点的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f3f/4858182/cc626665aa0d/pone.0152231.g001.jpg

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