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活细胞中的单分子追踪揭示了细胞核中转录因子独特的靶标搜索策略。

Single-molecule tracking in live cells reveals distinct target-search strategies of transcription factors in the nucleus.

作者信息

Izeddin Ignacio, Récamier Vincent, Bosanac Lana, Cissé Ibrahim I, Boudarene Lydia, Dugast-Darzacq Claire, Proux Florence, Bénichou Olivier, Voituriez Raphaël, Bensaude Olivier, Dahan Maxime, Darzacq Xavier

机构信息

Functional Imaging of Transcription, Institut de Biologie de l'Ecole Normale Supérieure (IBENS), Inserm U1024, and CNRS UMR 8197, Paris, France.

Laboratoire de Physique Théorique de la Matière Condensée, CNRS UMR 7600, Université Pierre et Marie Curie, Paris, France.

出版信息

Elife. 2014 Jun 12;3:e02230. doi: 10.7554/eLife.02230.

Abstract

Gene regulation relies on transcription factors (TFs) exploring the nucleus searching their targets. So far, most studies have focused on how fast TFs diffuse, underestimating the role of nuclear architecture. We implemented a single-molecule tracking assay to determine TFs dynamics. We found that c-Myc is a global explorer of the nucleus. In contrast, the positive transcription elongation factor P-TEFb is a local explorer that oversamples its environment. Consequently, each c-Myc molecule is equally available for all nuclear sites while P-TEFb reaches its targets in a position-dependent manner. Our observations are consistent with a model in which the exploration geometry of TFs is restrained by their interactions with nuclear structures and not by exclusion. The geometry-controlled kinetics of TFs target-search illustrates the influence of nuclear architecture on gene regulation, and has strong implications on how proteins react in the nucleus and how their function can be regulated in space and time.

摘要

基因调控依赖于转录因子(TFs)在细胞核中探索以寻找它们的靶点。到目前为止,大多数研究都集中在TFs扩散的速度上,而低估了核结构的作用。我们实施了一种单分子追踪测定法来确定TFs的动力学。我们发现c-Myc是细胞核的全局探索者。相比之下,正性转录延伸因子P-TEFb是局部探索者,对其周围环境进行过度采样。因此,每个c-Myc分子对所有核位点都同样可用,而P-TEFb以位置依赖的方式到达其靶点。我们的观察结果与一个模型一致,在该模型中,TFs的探索几何形状受到它们与核结构相互作用的限制,而不是通过排斥作用。TFs靶点搜索的几何形状控制动力学说明了核结构对基因调控的影响,并且对蛋白质在细胞核中的反应方式以及它们的功能如何在空间和时间上进行调控具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01b3/4095940/7a7168b77668/elife02230f001.jpg

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