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迈向对核心启动子热诱导动力学的详细描述。

Toward a detailed description of the thermally induced dynamics of the core promoter.

作者信息

Alexandrov Boian S, Gelev Vladimir, Yoo Sang Wook, Bishop Alan R, Rasmussen Kim Ø, Usheva Anny

机构信息

Theoretical Division and Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, New Mexico, United States of America.

出版信息

PLoS Comput Biol. 2009 Mar;5(3):e1000313. doi: 10.1371/journal.pcbi.1000313. Epub 2009 Mar 13.

Abstract

Establishing the general and promoter-specific mechanistic features of gene transcription initiation requires improved understanding of the sequence-dependent structural/dynamic features of promoter DNA. Experimental data suggest that a spontaneous dsDNA strand separation at the transcriptional start site is likely to be a requirement for transcription initiation in several promoters. Here, we use Langevin molecular dynamic simulations based on the Peyrard-Bishop-Dauxois nonlinear model of DNA (PBD LMD) to analyze the strand separation (bubble) dynamics of 80-bp-long promoter DNA sequences. We derive three dynamic criteria, bubble probability, bubble lifetime, and average strand separation, to characterize bubble formation at the transcriptional start sites of eight mammalian gene promoters. We observe that the most stable dsDNA openings do not necessarily coincide with the most probable openings and the highest average strand displacement, underscoring the advantages of proper molecular dynamic simulations. The dynamic profiles of the tested mammalian promoters differ significantly in overall profile and bubble probability, but the transcriptional start site is often distinguished by large (longer than 10 bp) and long-lived transient openings in the double helix. In support of these results are our experimental transcription data demonstrating that an artificial bubble-containing DNA template is transcribed bidirectionally by human RNA polymerase alone in the absence of any other transcription factors.

摘要

要确定基因转录起始的一般机制特征和启动子特异性机制特征,需要更好地理解启动子DNA的序列依赖性结构/动态特征。实验数据表明,转录起始位点处的双链DNA自发链分离可能是多个启动子转录起始的必要条件。在此,我们基于DNA的Peyrard-Bishop-Dauxois非线性模型(PBD LMD)进行朗之万分子动力学模拟,以分析80个碱基对长的启动子DNA序列的链分离(气泡)动力学。我们推导了三个动态标准,即气泡概率、气泡寿命和平均链分离,以表征八个哺乳动物基因启动子转录起始位点处的气泡形成。我们观察到,最稳定的双链DNA开口不一定与最可能的开口和最高的平均链位移一致,这突出了适当分子动力学模拟的优势。所测试的哺乳动物启动子的动态图谱在整体图谱和气泡概率上有显著差异,但转录起始位点通常以双螺旋中较大(超过10个碱基对)且寿命长的瞬时开口为特征。支持这些结果的是我们的实验转录数据,这些数据表明,在没有任何其他转录因子的情况下,人工含气泡的DNA模板可由人RNA聚合酶单独进行双向转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd4f/2645506/fbdd9fab2864/pcbi.1000313.g001.jpg

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