Systems Microscopy Centre, Division of Molecular and Cellular Function, School of Biological Sciences, Faculty Biology, Medicine & Health, Manchester Academic Health Sciences Centre, University of Manchester, Manchester, UK.
School of Life Sciences, University of Liverpool, Liverpool, UK.
Endocrinology. 2021 Apr 1;162(4). doi: 10.1210/endocr/bqaa249.
Gene transcription occurs in short bursts interspersed with silent periods, and these kinetics can be altered by promoter structure. The effect of alternate promoter architecture on transcription bursting is not known. We studied the human prolactin (hPRL) gene that contains 2 promoters, a pituitary-specific promoter that requires the transcription factor Pit-1 and displays dramatic transcriptional bursting activity and an alternate upstream promoter that is active in nonpituitary tissues. We studied large hPRL genomic fragments with luciferase reporters, and used bacterial artificial chromosome recombineering to manipulate critical promoter regions. Stochastic switch mathematical modelling of single-cell time-lapse luminescence image data revealed that the Pit-1-dependent promoter showed longer, higher-amplitude transcriptional bursts. Knockdown studies confirmed that the presence of Pit-1 stabilized and prolonged periods of active transcription. Pit-1 therefore plays an active role in establishing the timing of transcription cycles, in addition to its cell-specific functions.
基因转录是在短暂爆发和沉默期之间发生的,这些动力学可以通过启动子结构改变。不同启动子结构对转录爆发的影响尚不清楚。我们研究了人类催乳素(hPRL)基因,该基因包含 2 个启动子,一个是垂体特异性启动子,需要转录因子 Pit-1,表现出明显的转录爆发活性,另一个是上游替代启动子,在非垂体组织中活跃。我们研究了带有荧光素酶报告基因的大 hPRL 基因组片段,并使用细菌人工染色体重组来操作关键的启动子区域。单细胞延时荧光图像数据的随机开关数学模型显示,依赖 Pit-1 的启动子显示出更长、更高振幅的转录爆发。敲低研究证实,Pit-1 的存在稳定并延长了活跃转录的时间。因此,Pit-1 除了具有细胞特异性功能外,还在转录周期的定时中发挥积极作用。