作者
Gürol M Süel, Jordi Garcia-Ojalvo, Louisa M Liberman, Michael B Elowitz
发表日期
2006/3/23
期刊
Nature
卷号
440
期号
7083
页码范围
545-550
出版商
Nature Publishing Group UK
简介
Certain types of cellular differentiation are probabilistic and transient,,. In such systems individual cells can switch to an alternative state and, after some time, switch back again. In Bacillus subtilis, competence is an example of such a transiently differentiated state associated with the capability for DNA uptake from the environment. Individual genes and proteins underlying differentiation into the competent state have been identified,, but it has been unclear how these genes interact dynamically in individual cells to control both spontaneous entry into competence and return to vegetative growth. Here we show that this behaviour can be understood in terms of excitability in the underlying genetic circuit. Using quantitative fluorescence time-lapse microscopy, we directly observed the activities of multiple circuit components simultaneously in individual cells, and analysed the resulting data in terms of a mathematical …
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