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首页> 外文期刊>Journal of Molecular Endocrinology >Calcium dynamics and chromatin remodelling underlie heterogeneity in prolactin transcription.
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Calcium dynamics and chromatin remodelling underlie heterogeneity in prolactin transcription.

机译:钙动力学和染色质改造催乳素转录中的非均质性。

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摘要

Pituitary cells have been reported to show spontaneous calcium oscillations and dynamic transcription cycles. To study both processes in the same living cell in real time, we used rat pituitary GH3 cells stably expressing human prolactin-luciferase or prolactin-EGFP reporter gene constructs loaded with a fluorescent calcium indicator and measured activity using single-cell time-lapse microscopy. We observed heterogeneity between clonal cells in the calcium activity and prolactin transcription in unstimulated conditions. There was a significant correlation between cells displaying spontaneous calcium spikes and cells showing spontaneous bursts in prolactin expression. Notably, cells showing no basal calcium activity showed low prolactin expression but elicited a significantly greater transcriptional response to BayK8644 compared to cells showing basal calcium activity. This suggested the presence of two subsets of cells within the population at any one time. Fluorescence-activated cell sorting was used to sort cells into two populations based on the expression level of prolactin-EGFP however, the bimodal pattern of expression was restored within 26 h. Chromatin immunoprecipitation showed that these sorted populations were distinct due to the extent of histone acetylation. We suggest that maintenance of a heterogeneous bimodal population is a fundamental characteristic of this cell type and that calcium activation and histone acetylation, at least in part, drive prolactin transcriptional competence.
机译:据报道垂体细胞显示出自发性钙振荡和动态转录循环。为了实时研究同一活性细胞的过程,我们使用稳定地表达用单细胞钙指示剂的人催乳素 - 荧光素酶或催乳素-eGFP报告基因构建体的大鼠垂体GH3细胞和使用单细胞延时显微镜的测量活性。在未刺发的条件下,我们观察到钙活性中克隆细胞之间的异质性和催乳素转录。显示出自发钙尖峰和细胞之间的细胞之间存在显着的相关性,显示出在催乳素表达中的自发爆发。值得注意的是,显示没有基础钙活性的细胞显示出低催乳素表达,但与显示基础钙活性的细胞相比,对Bayk8644的细胞引起了对Bayk8644的显着更大的转录反应。这表明在任何时候都有两种群体内的细胞亚群。使用荧光激活的细胞分选用于基于催乳素-EGFP的表达水平将细胞分成两个群体,然而,在26小时内恢复表达的双峰模式。染色质免疫沉淀表明,由于组蛋白乙酰化的程度,这些分选群是不同的。我们建议维持异质双峰群是这种细胞类型的基本特征,并且至少部分地驱动催乳素转录能力,钙活化和组蛋白乙酰化。

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