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Small binding-site clearance delays are not negligible in gene expression modeling

机译:基因表达式建模中的小结合站点间隙延迟不可忽略不计

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摘要

During the templated biopolymerization processes of transcription and translation, a macromolecular machine, either an RNA polymerase or a ribosome, binds to a specific site on the template. Due to the sizes of these enzymes, there is a waiting time before one clears the binding site and another can bind. These clearance delays are relatively short, and one might think that they could be neglected. However, in the case of transcription, these clearance delays are associated with conservation laws, resulting in surprisingly large effects on the bifurcation diagrams in models of gene expression networks. We study an example of this phenomenon in a model of a gene regulated by a non-coding RNA displaying bistability. Neglecting the binding-site clearance delays in this model can only be compensated for by making ad hoc, unphysical adjustments to the model's kinetic constants.
机译:在转录和翻译的模板生物聚合过程中,大分子机器,RNA聚合酶或核糖体,与模板上的特定位点结合。 由于这些酶的尺寸,在清除结合位点之前存在等待时间,并且另一个可以结合。 这些清关延误相对较短,人们可能认为它们可能被忽视。 然而,在转录的情况下,这些清除延迟与保护法有关,导致基因表达网络模型中的分叉图令人惊讶的大量影响。 我们研究通过显示体积能的非编码RNA调节的基因模型中的这种现象的一个例子。 忽略该模型中的结合现场间隙延迟只能通过使临时,对模型的动力学常数进行不经透明的调整来补偿。

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