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人类成纤维细胞中氧化应激与DNA复制之间的空间相互作用

Spatial Cross-Talk between Oxidative Stress and DNA Replication in Human Fibroblasts.

作者信息

Radulovic Marko, Baqader Noor O, Stoeber Kai, Godovac-Zimmermann Jasminka

机构信息

Division of Medicine, University College London, Center for Nephrology , Royal Free Campus, Rowland Hill Street, London NW3 2PF, United Kingdom.

Insitute of Oncology and Radiology , Pasterova 14, 11000 Belgrade, Serbia.

出版信息

J Proteome Res. 2016 Jun 3;15(6):1907-38. doi: 10.1021/acs.jproteome.6b00101. Epub 2016 May 24.

Abstract

MS-based proteomics has been applied to a differential network analysis of the nuclear-cytoplasmic subcellular distribution of proteins between cell-cycle arrest: (a) at the origin activation checkpoint for DNA replication, or (b) in response to oxidative stress. Significant changes were identified for 401 proteins. Cellular response combines changes in trafficking and in total abundance to vary the local compartmental abundances that are the basis of cellular response. Appreciable changes for both perturbations were observed for 245 proteins, but cross-talk between oxidative stress and DNA replication is dominated by 49 proteins that show strong changes for both. Many nuclear processes are influenced by a spatial switch involving the proteins {KPNA2, KPNB1, PCNA, PTMA, SET} and heme/iron proteins HMOX1 and FTH1. Dynamic spatial distribution data are presented for proteins involved in caveolae, extracellular matrix remodelling, TGFβ signaling, IGF pathways, emerin complexes, mitochondrial protein import complexes, spliceosomes, proteasomes, and so on. The data indicate that for spatially heterogeneous cells cross-compartmental communication is integral to their system biology, that coordinated spatial redistribution for crucial protein networks underlies many functional changes, and that information on dynamic spatial redistribution of proteins is essential to obtain comprehensive pictures of cellular function. We describe how spatial data of the type presented here can provide priorities for further investigation of crucial features of high-level spatial coordination across cells. We suggest that the present data are related to increasing indications that much of subcellular protein transport is constitutive and that perturbation of these constitutive transport processes may be related to cancer and other diseases. A quantitative, spatially resolved nucleus-cytoplasm interaction network is provided for further investigations.

摘要

基于质谱的蛋白质组学已应用于细胞周期停滞期间蛋白质核质亚细胞分布的差异网络分析

(a)在DNA复制的起始激活检查点,或(b)对氧化应激的反应。共鉴定出401种蛋白质有显著变化。细胞反应通过运输变化和总丰度变化相结合,以改变局部区室丰度,而局部区室丰度是细胞反应的基础。对于245种蛋白质,观察到两种扰动均有明显变化,但氧化应激和DNA复制之间的相互作用主要由49种蛋白质主导,这49种蛋白质在两种情况下均显示出强烈变化。许多核过程受到涉及蛋白质{KPNA2、KPNB1、PCNA、PTMA、SET}以及血红素/铁蛋白HMOX1和FTH1的空间转换的影响。本文给出了参与小窝、细胞外基质重塑、TGFβ信号传导、IGF途径、emerin复合物、线粒体蛋白质导入复合物、剪接体、蛋白酶体等蛋白质的动态空间分布数据。数据表明,对于空间异质性细胞,跨区室通讯是其系统生物学的组成部分,关键蛋白质网络的协调空间重新分布是许多功能变化的基础,并且蛋白质动态空间重新分布的信息对于全面了解细胞功能至关重要。我们描述了此处呈现的这类空间数据如何为进一步研究跨细胞的高级空间协调的关键特征提供优先级。我们认为,目前的数据与越来越多的迹象相关,即许多亚细胞蛋白质运输是组成性的,并且这些组成性运输过程的扰动可能与癌症和其他疾病有关。提供了一个定量的、空间分辨的核-质相互作用网络以供进一步研究。

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