Division of Cell and Developmental Biology, College of Life Sciences, University of Dundee, Dundee, UK.
Development. 2010 Feb;137(4):579-84. doi: 10.1242/dev.043836.
Stimulation of transcription by extracellular signals is a major component of a cell's decision making. Yet the quantitative relationship between signal and acute transcriptional response is unclear. One view is that transcription is directly graded with inducer concentration. In an alternative model, the response occurs only above a threshold inducer concentration. Standard methods for monitoring transcription lack continuous information from individual cells or mask immediate-early transcription by measuring downstream protein expression. We have therefore used a technique for directly monitoring nascent RNA in living cells, to quantify the direct transcriptional response to an extracellular signal in real time, in single cells. At increasing doses of inducer, increasing numbers of cells displayed a transcriptional response. However, over the same range of doses, the change in cell response strength, measured as the length, frequency and intensity of transcriptional pulses, was small, with considerable variation between cells. These data support a model in which cells have different sensitivities to developmental inducer and respond in a digital manner above individual stimulus thresholds. Biased digital responses may be necessary for certain forms of developmental specification. Limiting bias in responsiveness is required to reduce noise in positional signalling.
细胞外信号刺激转录是细胞决策的主要组成部分。然而,信号和急性转录反应之间的定量关系尚不清楚。一种观点认为转录与诱导剂浓度直接分级。在另一种模型中,反应仅发生在诱导剂浓度超过阈值之后。监测转录的标准方法缺乏来自单个细胞的连续信息,或者通过测量下游蛋白表达来掩盖即时早期转录。因此,我们使用一种直接监测活细胞中新生 RNA 的技术,实时定量单个细胞中外源信号的直接转录反应。随着诱导剂剂量的增加,越来越多的细胞表现出转录反应。然而,在相同的剂量范围内,细胞反应强度的变化,如转录脉冲的长度、频率和强度,变化很小,细胞之间存在很大的差异。这些数据支持这样一种模型,即细胞对发育诱导剂有不同的敏感性,并以数字方式在单个刺激阈值之上做出反应。偏向数字反应可能是某些形式的发育规范所必需的。限制反应的偏差是减少位置信号噪声所必需的。