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首页> 外文期刊>Journal of cellular biochemistry. >Methods for measuring rates of protein binding to insoluble scaffolds in living cells: histone H1-chromatin interactions.
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Methods for measuring rates of protein binding to insoluble scaffolds in living cells: histone H1-chromatin interactions.

机译:测量与活细胞中不溶性支架结合的蛋白质的速率的方法:组蛋白H1-染色质相互作用。

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摘要

Understanding of cell regulation is limited by our inability to measure molecular binding rates for proteins within the structural context of living cells, and many systems biology models are hindered because they use values obtained with molecules binding in solution. Here, we present a kinetic analysis of GFP-histone H1 binding to chromatin within nuclei of living cells that allows both the binding rate constant k(ON) and dissociation rate constant k(OFF) to be determined based on data obtained from fluorescence recovery after photobleaching (FRAP) analysis. This is accomplished by measuring the ratio of bound to free concentration of protein at steady state, and identifying the rate-determining step during FRAP recovery experimentally, combined with mathematical modeling. We report k(OFF) = 0.0131/s and k(ON) = 0.14/s for histone H1.1 binding to chromatin. This work brings clarity to the interpretation of FRAP experiments and provides a way to determine binding kinetics for nuclear proteins and other cellular molecules that interact with insoluble scaffolds within living cells.
机译:对细胞调节的了解受到我们无法测量活细胞结构内蛋白质分子结合率的限制,许多系统生物学模型受到阻碍,因为它们使用与溶液中分子结合获得的值。在这里,我们介绍了GFP组蛋白H1结合到活细胞核内染色质的动力学分析,这使得结合速率常数k(ON)和解离速率常数k(OFF)都可以根据从荧光回收后获得的数据确定光漂白(FRAP)分析。这是通过在稳态下测量结合蛋白与游离蛋白的自由浓度之比,并结合数学模型,通过实验确定FRAP恢复过程中确定速率的步骤。我们报道组蛋白H1.1与染色质结合的k(OFF)= 0.0131 / s和k(ON)= 0.14 / s。这项工作使FRAP实验的解释更加清晰,并提供了一种方法来确定与活细胞内不溶性支架相互作用的核蛋白和其他细胞分子的结合动力学。

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