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在哺乳动物生物钟网络中模拟有义和反义 Period 转录本的相互作用。

Modeling the interactions of sense and antisense Period transcripts in the mammalian circadian clock network.

机构信息

Department of Biological Sciences, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, United States of America.

Biocomplexity Institute, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, United States of America.

出版信息

PLoS Comput Biol. 2018 Feb 15;14(2):e1005957. doi: 10.1371/journal.pcbi.1005957. eCollection 2018 Feb.

Abstract

In recent years, it has become increasingly apparent that antisense transcription plays an important role in the regulation of gene expression. The circadian clock is no exception: an antisense transcript of the mammalian core-clock gene PERIOD2 (PER2), which we shall refer to as Per2AS RNA, oscillates with a circadian period and a nearly 12 h phase shift from the peak expression of Per2 mRNA. In this paper, we ask whether Per2AS plays a regulatory role in the mammalian circadian clock by studying in silico the potential effects of interactions between Per2 and Per2AS RNAs on circadian rhythms. Based on the antiphasic expression pattern, we consider two hypotheses about how Per2 and Per2AS mutually interfere with each other's expression. In our pre-transcriptional model, the transcription of Per2AS RNA from the non-coding strand represses the transcription of Per2 mRNA from the coding strand and vice versa. In our post-transcriptional model, Per2 and Per2AS transcripts form a double-stranded RNA duplex, which is rapidly degraded. To study these two possible mechanisms, we have added terms describing our alternative hypotheses to a published mathematical model of the molecular regulatory network of the mammalian circadian clock. Our pre-transcriptional model predicts that transcriptional interference between Per2 and Per2AS can generate alternative modes of circadian oscillations, which we characterize in terms of the amplitude and phase of oscillation of core clock genes. In our post-transcriptional model, Per2/Per2AS duplex formation dampens the circadian rhythm. In a model that combines pre- and post-transcriptional controls, the period, amplitude and phase of circadian proteins exhibit non-monotonic dependencies on the rate of expression of Per2AS. All three models provide potential explanations of the observed antiphasic, circadian oscillations of Per2 and Per2AS RNAs. They make discordant predictions that can be tested experimentally in order to distinguish among these alternative hypotheses.

摘要

近年来,反义转录在基因表达调控中发挥重要作用这一点已变得越来越明显。生物钟也不例外:哺乳动物核心生物钟基因 PERIOD2(PER2)的反义转录本,我们将其称为 Per2AS RNA,其表达呈昼夜节律波动,与 Per2 mRNA 表达峰值的相位相差约 12 小时。在本文中,我们通过研究核心生物钟基因 PER2 和 Per2AS RNA 之间相互作用对昼夜节律的潜在影响,来研究 Per2AS 是否在哺乳动物生物钟中发挥调节作用。基于反相表达模式,我们考虑了两种关于 Per2 和 Per2AS 如何相互干扰对方表达的假说。在我们的转录前模型中,非编码链上 Per2AS RNA 的转录会抑制编码链上 Per2 mRNA 的转录,反之亦然。在我们的转录后模型中,Per2 和 Per2AS 转录本形成双链 RNA 二聚体,然后迅速降解。为了研究这两种可能的机制,我们在发表的哺乳动物生物钟分子调控网络数学模型中添加了描述替代假说的术语。我们的转录前模型预测,Per2 和 Per2AS 之间的转录干扰可以产生昼夜节律波动的替代模式,我们使用核心生物钟基因的振荡幅度和相位来对其进行特征描述。在我们的转录后模型中,Per2/Per2AS 双链体的形成会抑制昼夜节律。在结合转录前和转录后控制的模型中,核心时钟蛋白的昼夜节律的周期、幅度和相位表现出对 Per2AS 表达速率的非单调依赖性。所有三个模型都为 Per2 和 Per2AS RNA 的观察到的反相、昼夜节律波动提供了潜在解释。它们提出了不一致的预测,可以通过实验进行检验,以区分这些替代假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b6f/5831635/d7b77759d4f1/pcbi.1005957.g001.jpg

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