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Developmental Biology|May 19, 2011
Stage-dependent regulation of mammary ductal branching by heparan sulfate and HGF-cMet signalingOmai B Garner, Kevin T Bush, Kabir B Nigam, et al.Drug Metabolism and Disposition: the Biological Fate of Chemicals|August 8, 2013
Multispecific drug transporter Slc22a8 (Oat3) regulates multiple metabolic and signaling pathwaysWei Wu, Neema Jamshidi, Satish A Eraly, et al.Physiological Reviews|December 26, 2014
The organic anion transporter (OAT) family: a systems biology perspectiveSanjay K Nigam, Kevin T Bush, Gleb Martovetsky, et al.Developmental Biology|January 12, 2010
Hs2st mediated kidney mesenchyme induction regulates early ureteric bud branchingMita M Shah, Hiroyuki Sakurai, Derina E Sweeney, et al.Developmental Biology|May 24, 2011
Growth factor-dependent branching of the ureteric bud is modulated by selective 6-O sulfation of heparan sulfateMita M Shah, Hiroyuki Sakurai, Thomas F Gallegos, et al.Elife|November 12, 2015
Generation of an expandable intermediate mesoderm restricted progenitor cell line from human pluripotent stem cellsNathan Kumar, Jenna Richter, Josh Cutts, et al.Developmental Biology|August 29, 2006
Development and differentiation of the ureteric bud into the ureter in the absence of a kidney collecting systemKevin T Bush, Duke A Vaughn, Xue Li, et al.The Journal of Biological Chemistry|January 4, 2020
Unique metabolite preferences of the drug transporters OAT1 and OAT3 analyzed by machine learningAnisha K Nigam, Julia G Li, Kaustubh Lall, et al.Plos One|May 27, 2010
Loss of the heparan sulfate sulfotransferase, Ndst1, in mammary epithelial cells selectively blocks lobuloalveolar development in miceBrett E Crawford, Omai B Garner, Joseph R Bishop, et al.Developmental Biology|February 1, 2012
A protein kinase A and Wnt-dependent network regulating an intermediate stage in epithelial tubulogenesis during kidney developmentThomas F Gallegos, Valentina Kouznetsova, Krystyna Kudlicka, et al.Pageof 6