Laboratory for Systems Chemistry

Prof. Gonen Ashkenasy Research Group

Boolean logic functions of a synthetic peptide network

Gonen Ashkenasy, M. Reza Ghadiri

Living cells can process rapidly and simultaneously multiple extracellular input signals through the complex networks of evolutionary selected biomolecular interactions and chemical transformations. Recent approaches to molecular computation have increasingly sought to mimic or exploit various aspects of biology. A number of studies have adapted nucleic acids and proteins to the design of molecular logic gates and computational systems, while other works have affected computation in living cells via biochemical pathway engineering. Here we report that de novo designed synthetic peptide networks can also mimic some of the basic logic functions of the more complex biological networks. We show that segments of a small network whose graph structure is composed of five nodes and 15 directed edges can express OR, NOR, and NOTIF logic.

Publication language English
Pages 11140-11141
Volume 126
Issue number 36
Publication status Published - 15.09.2004

ASJC Scopus subject areas

Catalysis
General Chemistry
Biochemistry
Colloid and Surface Chemistry
Access to Document
10.1021/ja046745c
Other files and links
Link to publication in Scopus