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Development Genes and Evolution|December 18, 2017
Notch-mediated lateral inhibition is an evolutionarily conserved mechanism patterning the ectoderm in echinoidsEric M ErkenbrackProceedings of the National Academy of Sciences of the United States of America|November 5, 2016
Divergence of ectodermal and mesodermal gene regulatory network linkages in early development of sea urchinsEric M ErkenbrackJournal of Experimental Zoology. Part B, Molecular and Developmental Evolution|May 26, 2017
A Conserved Role for VEGF Signaling in Specification of Homologous Mesenchymal Cell Types Positioned at Spatially Distinct Developmental Addresses in Early Development of Sea UrchinsEric M Erkenbrack, Elizabeth PetsiosProceedings of the National Academy of Sciences of the United States of America|July 15, 2015
Evolutionary rewiring of gene regulatory network linkages at divergence of the echinoid subclassesEric M Erkenbrack, Eric H DavidsonCommunications Biology|May 10, 2019
Cell type phylogenetics informs the evolutionary origin of echinoderm larval skeletogenic cell identityEric M Erkenbrack, Jeffrey R ThompsonDevelopment (Cambridge, England)|November 25, 2018
Conserved regulatory state expression controlled by divergent developmental gene regulatory networks in echinoidsEric M Erkenbrack, Eric H Davidson, Isabelle S PeterBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|March 29, 2019
Stress-Induced Evolutionary Innovation: A Mechanism for the Origin of Cell TypesGünter P Wagner, Eric M Erkenbrack, Alan C LoveDevelopment Genes and Evolution|January 20, 2016
Ancestral state reconstruction by comparative analysis of a GRN kernel operating in echinodermsEric M Erkenbrack, Kayla Ako-Asare, Emily Miller, et al.Scientific Reports|October 22, 2015
Reorganization of sea urchin gene regulatory networks at least 268 million years ago as revealed by oldest fossil cidaroid echinoidJeffrey R Thompson, Elizabeth Petsios, Eric H Davidson, et al.Reproductive Sciences (Thousand Oaks, Calif.)|October 13, 2018
Decidualization of Human Endometrial Stromal Fibroblasts is a Multiphasic Process Involving Distinct Transcriptional ProgramsKalle T Rytkönen, Eric M Erkenbrack, Matti Poutanen, et al.Pageof 2