Publications

Export 555 results:
Author Title [ Type(Asc)] Year
Filters: First Letter Of Last Name is H  [Clear All Filters]
Journal Articles
Essien K, Vigneau S, Apreleva S, Singh LN, Bartolomei MS, Hannenhalli S.  2009.  CTCF binding site classes exhibit distinct evolutionary, genomic, epigenomic and transcriptomic features. Genome BiologyGenome Biology. 10
El‐Sayed NM, Patton C.L, Harkins P.C, Fox R.O, Anderson K..  1995.  Crystallization and preliminary X-ray investigation of the recombinant Trypanosoma brucei rhodesiense calmodulin. Proteins: Structure, Function, and BioinformaticsProteins: Structure, Function, and Bioinformatics. 21
Huq A, R. Sack B, Nizam A, Longini IM, G. Nair B, Ali A, J. Morris G, Khan M.NHuda, A. Siddique K, Yunus M et al..  2005.  Critical Factors Influencing the Occurrence of Vibrio Cholerae in the Environment of Bangladesh. Applied and Environmental MicrobiologyAppl. Environ. Microbiol.Applied and Environmental MicrobiologyAppl. Environ. Microbiol.. 71
Zo Y-G, Chokesajjawatee N, Arakawa E, Watanabe H, Huq A, Colwell RR.  2008.  Covariability of Vibrio Cholerae Microdiversity and Environmental Parameters. Applied and Environmental MicrobiologyAppl. Environ. Microbiol.Applied and Environmental MicrobiologyAppl. Environ. Microbiol.. 74
Singh LN, Hannenhalli S.  2010.  Correlated Changes Between Regulatory Cis Elements and Condition-Specific Expression in Paralogous Gene Families. Nucleic Acids ResearchNucl. Acids Res.Nucleic Acids ResearchNucl. Acids Res.. 38
Senoh M, Ghosh‐Banerjee J, Ramamurthy T, Hamabata T, Kurakawa T, Takeda M, Colwell RR, G. Nair B, Takeda Y.  2010.  Conversion of viable but nonculturable Vibrio cholerae to the culturable state by co‐culture with eukaryotic cells. Microbiology and ImmunologyMicrobiology and Immunology. 54
He X, Chatterjee R, John S, Bravo H, Sathyanarayana BK, Biddie SC, FitzGerald PC, Stamatoyannopoulos JA, Hager GL, Vinson C.  2013.  Contribution of nucleosome binding preferences and co-occurring DNA sequences to transcription factor binding. BMC Genomics. 14(1):428.
He X, Chatterjee R, John S, Bravo H, Sathyanarayana BK, Biddie SC, FitzGerald PC, Stamatoyannopoulos JA, Hager GL, Vinson C.  2013.  Contribution of nucleosome binding preferences and co-occurring DNA sequences to transcription factor binding. BMC Genomics. 14(1):428.
Almeida M, Hebert A, Abraham A-L, Rasmussen S, Monnet C, Pons N, Delbes C, Loux V, Batto J-M, Leonard P et al..  2014.  Construction of a dairy microbial genome catalog opens new perspectives for the metagenomic analysis of dairy fermented products. BMC GenomicsBMC Genomics. 15:1101.
Ruppin E., Horn D., Levy N., Reggia JA.  1996.  Computational studies of synaptic alterations in Alzheimer’s disease. Neural modeling of brain and cognitive disordersNeural modeling of brain and cognitive disorders.
Leparc G.G, Mitra R.D, Vardhanabhuti S., Wang J., Hannenhalli S, Smit S., Widmann J., Knight R., Wu S., Zhang Y. et al..  2007.  COMPUTATIONAL BIOLOGY. Nucleic acids researchNucleic Acids Research. 35
Essien K, Hannenhalli S, Stoeckert CJ.  2008.  Computational Analysis of Constraints on Noncoding Regions, Coding Regions and Gene Expression in Relation to Plasmodium Phenotypic Diversity. PLoS ONEPLoS ONEPLoS ONEPLoS ONE. 3
Campbell MA, Haas BJ, Hamilton JP, Mount SM, C Buell R.  2006.  Comprehensive analysis of alternative splicing in rice and comparative analyses with Arabidopsis.. BMC Genomics. 7:327.
Campbell MA, Haas BJ, Hamilton JP, Mount SM, C Buell R.  2006.  Comprehensive analysis of alternative splicing in rice and comparative analyses with Arabidopsis.. BMC Genomics. 7:327.
C. Buell R, Joardar V, Lindeberg M, Selengut J., Paulsen IT, Gwinn ML, Dodson RJ, DeBoy RT, A. Durkin S, Kolonay JF et al..  2003.  The complete genome sequence of the Arabidopsis and tomato pathogen Pseudomonas syringae pv. tomato DC3000. Proceedings of the National Academy of Sciences of the United States of AmericaProceedings of the National Academy of Sciences of the United States of America. 100
Nelson K.E, Weinel C., Paulsen I.T, Dodson R.J, Hilbert H., Santos V.APMart, Fouts D.E, Gill S.R, Pop M., Holmes M. et al..  2003.  Complete genome sequence and comparative analysis of the metabolically versatile Pseudomonas putida KT2440. Environmental MicrobiologyEnvironmental Microbiology. 5
Nelson K.E, Weinel C., Paulsen I.T, Dodson R.J, Hilbert H., Santos V.APMart, Fouts D.E, Gill S.R, Pop M., Holmes M. et al..  2003.  Complete genome sequence and comparative analysis of the metabolically versatile Pseudomonas putida KT2440. Environmental MicrobiologyEnvironmental Microbiology. 5
Seshadri R, Myers GSA, Tettelin H, Eisen JA, Heidelberg JF, Dodson RJ, Davidsen TM, DeBoy RT, Fouts DE, Haft DH et al..  2004.  Comparison of the genome of the oral pathogen Treponema denticola with other spirochete genomes. Proceedings of the National Academy of Sciences of the United States of AmericaProceedings of the National Academy of Sciences of the United States of America. 101
Seshadri R, Myers GSA, Tettelin H, Eisen JA, Heidelberg JF, Dodson RJ, Davidsen TM, DeBoy RT, Fouts DE, Haft DH et al..  2004.  Comparison of the genome of the oral pathogen Treponema denticola with other spirochete genomes. Proceedings of the National Academy of Sciences of the United States of AmericaProceedings of the National Academy of Sciences of the United States of America. 101
Seshadri R, Myers GSA, Tettelin H, Eisen JA, Heidelberg JF, Dodson RJ, Davidsen TM, DeBoy RT, Fouts DE, Haft DH et al..  2004.  Comparison of the genome of the oral pathogen Treponema denticola with other spirochete genomes. Proceedings of the National Academy of Sciences of the United States of AmericaProceedings of the National Academy of Sciences of the United States of America. 101
Cummings MP, Handley S.A, Myers D.S, Reed D.L, Rokas A., Winka K..  2003.  Comparing bootstrap and posterior probability values in the four-taxon case. Syst BiolSyst Biol. 52
Chun J., Grim C.J, Hasan N.A, Lee J.H, Choi S.Y, Haley B.J, Taviani E., Jeon Y.S, Kim D.W, Lee J.H et al..  2009.  Comparative genomics reveals mechanism for short-term and long-term clonal transitions in pandemic Vibrio cholerae. Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences. 106
Chun J., Grim C.J, Hasan N.A, Lee J.H, Choi S.Y, Haley B.J, Taviani E., Jeon Y.S, Kim D.W, Lee J.H et al..  2009.  Comparative genomics reveals mechanism for short-term and long-term clonal transitions in pandemic Vibrio cholerae. Proceedings of the National Academy of SciencesProceedings of the National Academy of Sciences. 106
El‐Sayed NM, Myler PJ, Blandin G, Berriman M, Crabtree J, Aggarwal G, Caler E, Renauld H, Worthey EA, Hertz-Fowler C et al..  2005.  Comparative Genomics of Trypanosomatid Parasitic Protozoa. ScienceScience. 309
El‐Sayed NM, Myler PJ, Blandin G, Berriman M, Crabtree J, Aggarwal G, Caler E, Renauld H, Worthey EA, Hertz-Fowler C et al..  2005.  Comparative Genomics of Trypanosomatid Parasitic Protozoa. ScienceScience. 309

Pages