{"_id":"t7HcB45E9WK4Kt3KM","bibbaseid":"agarwala-pandey-maiti-gquadruplexesastoolsforsyntheticbiology-2013","author_short":["Agarwala, P.","Pandey, S.","Maiti, S."],"bibdata":{"bibtype":"article","type":"article","title":"G-quadruplexes as tools for synthetic biology.","issn":"1439-7633","url":"http://www.ncbi.nlm.nih.gov/pubmed/24106165","doi":"10.1002/cbic.201300456","abstract":"With the potential to engineer biological systems, synthetic biology is an emerging field that combines various disciplines of sciences. It encompasses combinations of DNA, RNA and protein modules for constructing desired systems and the \"rewiring\" of existing signalling networks. Despite recent advances, this field still lags behind in the artificial reconstruction of cellular processes, and thus demands new modules and switches to create \"genetic circuits\". The widely characterised noncanonical nucleic acid secondary structures, G-quadruplexes are promising candidates to be used as biological modules in synthetic biology. Structural plasticity and functional versatility are significant G-quadruplex traits for its integration into a biological system and for diverse applications in synthetic circuits.","journal":"Chembiochem : a European journal of chemical biology","author":[{"propositions":[],"lastnames":["Agarwala"],"firstnames":["Prachi"],"suffixes":[]},{"propositions":[],"lastnames":["Pandey"],"firstnames":["Satyaprakash"],"suffixes":[]},{"propositions":[],"lastnames":["Maiti"],"firstnames":["Souvik"],"suffixes":[]}],"month":"September","year":"2013","pmid":"24106165","keywords":"#nosource","pages":"2077–2081","bibtex":"@article{Agarwala2013,\n\ttitle = {G-quadruplexes as tools for synthetic biology.},\n\tissn = {1439-7633},\n\turl = {http://www.ncbi.nlm.nih.gov/pubmed/24106165},\n\tdoi = {10.1002/cbic.201300456},\n\tabstract = {With the potential to engineer biological systems, synthetic biology is an emerging field that combines various disciplines of sciences. It encompasses combinations of DNA, RNA and protein modules for constructing desired systems and the \"rewiring\" of existing signalling networks. Despite recent advances, this field still lags behind in the artificial reconstruction of cellular processes, and thus demands new modules and switches to create \"genetic circuits\". The widely characterised noncanonical nucleic acid secondary structures, G-quadruplexes are promising candidates to be used as biological modules in synthetic biology. Structural plasticity and functional versatility are significant G-quadruplex traits for its integration into a biological system and for diverse applications in synthetic circuits.},\n\tjournal = {Chembiochem : a European journal of chemical biology},\n\tauthor = {Agarwala, Prachi and Pandey, Satyaprakash and Maiti, Souvik},\n\tmonth = sep,\n\tyear = {2013},\n\tpmid = {24106165},\n\tkeywords = {\\#nosource},\n\tpages = {2077--2081},\n}\n\n","author_short":["Agarwala, P.","Pandey, S.","Maiti, S."],"key":"Agarwala2013","id":"Agarwala2013","bibbaseid":"agarwala-pandey-maiti-gquadruplexesastoolsforsyntheticbiology-2013","role":"author","urls":{"Paper":"http://www.ncbi.nlm.nih.gov/pubmed/24106165"},"keyword":["#nosource"],"metadata":{"authorlinks":{}},"html":""},"bibtype":"article","biburl":"https://bibbase.org/zotero/eric.larG4","dataSources":["4i5C7S78DvJNsaHyg","5L2zM5wNE5CBYNuea"],"keywords":["#nosource"],"search_terms":["quadruplexes","tools","synthetic","biology","agarwala","pandey","maiti"],"title":"G-quadruplexes as tools for synthetic biology.","year":2013}