Synthetic enhancer design by in silico compensatory evolution reveals flexibility and constraint in cis-regulation. Barr, K. A., Martinez, C., Moran, J. R., Kim, A., Ramos, A. F., & Reinitz, J. BMC Systems Biology, Springer Science and Business Media LLC, November, 2017.
Synthetic enhancer design by in silico compensatory evolution reveals flexibility and constraint in cis-regulation [link]Paper  doi  bibtex   
@article{Barr_2017, title={Synthetic enhancer design by in silico compensatory evolution reveals flexibility and constraint in cis-regulation}, volume={11}, ISSN={1752-0509}, url={http://dx.doi.org/10.1186/S12918-017-0485-2}, DOI={10.1186/s12918-017-0485-2}, number={1}, journal={BMC Systems Biology}, publisher={Springer Science and Business Media LLC}, author={Barr, Kenneth A. and Martinez, Carlos and Moran, Jennifer R. and Kim, Ah-Ram and Ramos, Alexandre F. and Reinitz, John}, year={2017}, month=nov }

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