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The Prolactin Gene: A Paradigm of Tissue-Specific Gene Regulation with Complex Temporal Transcription Dynamics

机译:催乳素基因:组织特定基因调控的范式具有复杂的时间转录动力学。

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摘要

Transcription of numerous mammalian genes is highly pulsatile, with bursts of expression occurring with variable duration and frequency. The presence of this stochastic or ‘noisy’ expression pattern has been relatively unexplored in tissue systems. The prolactin gene provides a model of tissue-specific gene regulation resulting in pulsatile transcription dynamics in both cell lines and endocrine tissues. In most cell culture models, prolactin transcription appears to be highly variable between cells, with differences in transcription pulse duration and frequency. This apparently stochastic transcription is constrained by a transcriptional refractory period, which may be related to cycles of chromatin remodelling. We propose that prolactin transcription dynamics result from the summation of oscillatory cellular inputs and by regulation through chromatin remodelling cycles. Observations of transcription dynamics in cells within pituitary tissue show reduced transcriptional heterogeneity and can be grouped into a small number of distinct patterns. Thus, it appears that the tissue environment is able to reduce transcriptional noise to enable coordinated tissue responses to environmental change. We review the current knowledge on the complex tissue-specific regulation of the prolactin gene in pituitary and extra-pituitary sites, highlighting differences between humans and rodent experimental animal models. Within this context, we describe the transcription dynamics of prolactin gene expression and how this may relate to specific processes occurring within the cell.
机译:许多哺乳动物基因的转录是高度搏动的,表达突变以持续的时间和频率发生。在组织系统中,这种随机或“嘈杂”的表达方式的存在还相对较少。催乳素基因提供了一种组织特异性基因调控的模型,可导致细胞系和内分泌组织的搏动性转录动态。在大多数细胞培养模型中,催乳素转录似乎在细胞之间高度可变,转录脉冲的持续时间和频率存在差异。这种明显的随机转录受到转录不应期的限制,转录不应期可能与染色质重塑的周期有关。我们建议催乳素转录动力学是由振荡细胞输入的总和和通过染色质重塑周期的调节引起的。垂体组织内细胞中转录动态的观察结果表明,转录异质性降低,可以分为少量不同的模式。因此,似乎组织环境能够减少转录噪声以实现协调的组织对环境变化的响应。我们回顾了关于垂体和垂体外泌乳素基因的复杂组织特异性调控的当前知识,强调了人类和啮齿动物实验动物模型之间的差异。在这种情况下,我们描述了催乳素基因表达的转录动力学,以及这可能与细胞内发生的特定过程有关。

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