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从蛋白质迁移率图谱中解析活细胞中的染色质相互作用。

Dissecting chromatin interactions in living cells from protein mobility maps.

机构信息

Deutsches Krebsforschungszentrum and BioQuant, Research Group Genome Organization and Function, Im Neuenheimer Feld 280, 69120, Heidelberg, Germany.

出版信息

Chromosome Res. 2011 Jan;19(1):99-115. doi: 10.1007/s10577-010-9155-6.

Abstract

The genome of eukaryotes is organized into a dynamic nucleoprotein complex referred to as chromatin, which can adopt different functional states. Both the DNA and the protein component of chromatin are subject to various post-translational modifications that define the cell's gene expression program. Their readout and establishment occurs in a spatio-temporally coordinated manner that is controlled by numerous chromatin-interacting proteins. Binding to chromatin in living cells can be measured by a spatially resolved analysis of protein mobility using fluorescence microscopy based approaches. Recent advancements in the acquisition of protein mobility data using fluorescence bleaching and correlation methods provide data sets on diffusion coefficients, binding kinetics, and cellular concentrations on different time and length scales. The combination of different techniques is needed to dissect the complex interplay of diffusive translocations, binding events, and mobility constraints of the chromatin environment. While bleaching techniques have their strength in the characterization of particles that are immobile on the second/minute time scale, a correlation analysis is advantageous to characterize transient binding events with millisecond residence time. The application and synergy effects of the different approaches to obtain protein mobility and interaction maps in the nucleus are illustrated for the analysis of heterochromatin protein 1.

摘要

真核生物的基因组组织成一种称为染色质的动态核蛋白复合物,它可以采用不同的功能状态。染色质的 DNA 和蛋白质成分都受到各种翻译后修饰的影响,这些修饰定义了细胞的基因表达程序。它们的读取和建立以时空协调的方式发生,由许多与染色质相互作用的蛋白质控制。通过基于荧光显微镜的方法对蛋白质在活细胞中的染色质结合进行空间分辨分析,可以测量其结合。使用荧光漂白和相关方法获取蛋白质迁移率数据的最新进展为扩散系数、结合动力学和不同时间和长度尺度上的细胞浓度提供了数据集。为了剖析染色质环境中扩散易位、结合事件和流动性限制的复杂相互作用,需要结合使用不同的技术。虽然漂白技术在表征在第二/分钟时间尺度上不移动的颗粒方面具有优势,但相关分析有利于表征具有毫秒停留时间的瞬时结合事件。为了分析异染色质蛋白 1,本文说明了获得核内蛋白质迁移率和相互作用图谱的不同方法的应用和协同效应。

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