Erine H. Budi, Ph.D.
|2011||University of Washington, Seattle, Seattle, WA|
Mean distance: 42746.4
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|Budi EH, Xu J, Derynck R. (2016) Regulation of TGF-β Receptors. Methods in Molecular Biology (Clifton, N.J.). 1344: 1-33|
|Muthusamy BP, Budi EH, Katsuno Y, et al. (2015) ShcA Protects against Epithelial-Mesenchymal Transition through Compartmentalized Inhibition of TGF-β-Induced Smad Activation. Plos Biology. 13: e1002325|
|Budi EH, Muthusamy BP, Derynck R. (2015) The insulin response integrates increased TGF-β signaling through Akt-induced enhancement of cell surface delivery of TGF-β receptors. Science Signaling. 8: ra96|
|Budi EH, Patterson LB, Parichy DM. (2011) Post-embryonic nerve-associated precursors to adult pigment cells: genetic requirements and dynamics of morphogenesis and differentiation. Plos Genetics. 7: e1002044|
|Elizondo MR, Budi EH, Parichy DM. (2010) trpm7 regulation of in vivo cation homeostasis and kidney function involves stanniocalcin 1 and fgf23. Endocrinology. 151: 5700-9|
|Hultman KA, Budi EH, Teasley DC, et al. (2009) Defects in ErbB-dependent establishment of adult melanocyte stem cells reveal independent origins for embryonic and regeneration melanocytes. Plos Genetics. 5: e1000544|
|Budi EH, Patterson LB, Parichy DM. (2008) Embryonic requirements for ErbB signaling in neural crest development and adult pigment pattern formation. Development (Cambridge, England). 135: 2603-14|
|Quigley IK, Turner JM, Nuckels RJ, et al. (2004) Pigment pattern evolution by differential deployment of neural crest and post-embryonic melanophore lineages in Danio fishes. Development (Cambridge, England). 131: 6053-69|