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Progress in Molecular Biology and Translational Science|April 22, 2011
Natural history of the eukaryotic chromatin protein methylation systemL Aravind, Saraswathi Abhiman, Lakshminarayan M IyerBiology Direct|October 7, 2008
A new family of polymerases related to superfamily A DNA polymerases and T7-like DNA-dependent RNA polymerasesLakshminarayan M Iyer, Saraswathi Abhiman, L AravindBirth Defects Research. Part C, Embryo Today : Reviews|June 17, 2009
Apprehending multicellularity: regulatory networks, genomics, and evolutionL Aravind, Vivek Anantharaman, Thiago M VenancioMethods in Molecular Biology (Clifton, N.J.)|April 22, 2009
Methods to reconstruct and compare transcriptional regulatory networksM Madan Babu, Benjamin Lang, L AravindCurrent Opinion in Microbiology|October 24, 2003
Evolutionary connections between bacterial and eukaryotic signaling systems: a genomic perspectiveL Aravind, Vivek Anantharaman, Lakshminaryan M IyerBioinformatics (Oxford, England)|September 20, 2007
The DOMON domains are involved in heme and sugar recognitionLakshminarayan M Iyer, Vivek Anantharaman, L AravindCurrent Opinion in Chemical Biology|January 28, 2003
Emergence of diverse biochemical activities in evolutionarily conserved structural scaffolds of proteinsVivek Anantharaman, L Aravind, Eugene V KooninBiology Direct|March 19, 2008
MutL homologs in restriction-modification systems and the origin of eukaryotic MORC ATPasesLakshminarayan M Iyer, Saraswathi Abhiman, L AravindNucleic Acids Research|March 28, 2002
Comparative genomics and evolution of proteins involved in RNA metabolismVivek Anantharaman, Eugene V Koonin, L AravindProteins|May 16, 2002
Monophyly of class I aminoacyl tRNA synthetase, USPA, ETFP, photolyase, and PP-ATPase nucleotide-binding domains: implications for protein evolution in the RNAL Aravind, Vivek Anantharaman, Eugene V KooninPageof 65