作者
Ramiz Daniel, Jacob R Rubens, Rahul Sarpeshkar, Timothy K Lu
发表日期
2013/5/30
期刊
Nature
卷号
497
期号
7451
页码范围
619-623
出版商
Nature Publishing Group UK
简介
A central goal of synthetic biology is to achieve multi-signal integration and processing in living cells for diagnostic, therapeutic and biotechnology applications. Digital logic has been used to build small-scale circuits, but other frameworks may be needed for efficient computation in the resource-limited environments of cells,. Here we demonstrate that synthetic analog gene circuits can be engineered to execute sophisticated computational functions in living cells using just three transcription factors. Such synthetic analog gene circuits exploit feedback to implement logarithmically linear sensing, addition, ratiometric and power-law computations. The circuits exhibit Weber’s law behaviour as in natural biological systems, operate over a wide dynamic range of up to four orders of magnitude and can be designed to have tunable transfer functions. Our circuits can be composed to implement higher-order functions that are …
引用总数
201320142015201620172018201920202021202220232024174955545151554347363013
学术搜索中的文章