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Xenopus Deep Cell Aggregates: A 3D Tissue Model for Mesenchymal-to-Epithelial Transition. , Kim HY , Davidson LA ., Methods Mol Biol. January 1, 2021; 2179 275-287.
Mucociliary Epithelial Organoids from Xenopus Embryonic Cells: Generation, Culture and High-Resolution Live Imaging. , Kang HJ, Kim HY ., J Vis Exp. July 28, 2020; (161):
Tissue mechanics drives regeneration of a mucociliated epidermis on the surface of Xenopus embryonic aggregates. , Kim HY , Jackson TR, Stuckenholz C, Davidson LA ., Nat Commun. January 31, 2020; 11 (1): 665.
Spatiotemporally Controlled Mechanical Cues Drive Progenitor Mesenchymal-to-Epithelial Transition Enabling Proper Heart Formation and Function. , Jackson TR, Kim HY , Balakrishnan UL, Stuckenholz C, Davidson LA ., Curr Biol. May 8, 2017; 27 (9): 1326-1335.
A Novel Long-Acting Glucagon-Like Peptide-1 Agonist with Improved Efficacy in Insulin Secretion and β-Cell Growth. , Kim HY , Hwang JI, Moon MJ, Seong JY., Endocrinol Metab (Seoul). September 1, 2014; 29 (3): 320-7.
Investigating morphogenesis in Xenopus embryos: imaging strategies, processing, and analysis. , Kim HY , Davidson LA ., Cold Spring Harb Protoc. April 1, 2013; 2013 (4): 298-304.
Assembly of chambers for stable long-term imaging of live Xenopus tissue. , Kim HY , Davidson LA ., Cold Spring Harb Protoc. April 1, 2013; 2013 (4): 366-9.
Microsurgical approaches to isolate tissues from Xenopus embryos for imaging morphogenesis. , Kim HY , Davidson LA ., Cold Spring Harb Protoc. April 1, 2013; 2013 (4): 362-5.
Preparation and use of reporter constructs for imaging morphogenesis in Xenopus embryos. , Kim HY , Davidson LA ., Cold Spring Harb Protoc. April 1, 2013; 2013 (4): 359-61.
Microscopy tools for quantifying developmental dynamics in Xenopus embryos. , Joshi SD, Kim HY , Davidson LA ., Methods Mol Biol. January 1, 2012; 917 477-93.
Punctuated actin contractions during convergent extension and their permissive regulation by the non-canonical Wnt-signaling pathway. , Kim HY , Davidson LA ., J Cell Sci. February 15, 2011; 124 (Pt 4): 635-46.
Macroscopic stiffening of embryonic tissues via microtubules, RhoGEF and the assembly of contractile bundles of actomyosin. , Zhou J, Kim HY , Wang JH , Davidson LA ., Development. August 1, 2010; 137 (16): 2785-94.
Emergent morphogenesis: elastic mechanics of a self-deforming tissue. , Davidson LA , Joshi SD, Kim HY , von Dassow M, Zhang L, Zhou J., J Biomech. January 5, 2010; 43 (1): 63-70.
Actomyosin stiffens the vertebrate embryo during crucial stages of elongation and neural tube closure. , Zhou J, Kim HY , Davidson LA ., Development. February 1, 2009; 136 (4): 677-88.
Differential recovery of action potential duration and HERG currents from the effects of two methanesulfonamide class III antiarrhythmic agents, KCB-328 and dofetilide. , Lee K, Park JB , Jeon BH, Kim KJ, Ryu PD, Kwon LS, Kim HY ., J Cardiovasc Pharmacol. November 1, 2003; 42 (5): 648-55.
Calcium influx factor (CIF) as a diffusible messenger for the activation of capacitative calcium entry in Xenopus oocytes. , Kim HY , Hanley MR., Mol Cells. June 30, 1999; 9 (3): 326-32.
Calcium influx factor is synthesized by yeast and mammalian cells depleted of organellar calcium stores. , Csutora P, Su Z, Kim HY , Bugrim A, Cunningham KW, Nuccitelli R, Keizer JE, Hanley MR, Blalock JE, Marchase RB., Proc Natl Acad Sci U S A. January 5, 1999; 96 (1): 121-6.
Double-stranded-RNA-activated protein kinase ( PKR) regulates Ca2+ stores in Xenopus oocytes. , Thomas D, Kim HY , Morgan R, Hanley MR., Biochem J. March 1, 1998; 330 ( Pt 2) 599-603.
Regulation of inositol trisphosphate-induced membrane currents in Xenopus oocytes by a Jurkat cell calcium influx factor. , Thomas D, Kim HY , Hanley MR., Biochem J. September 1, 1996; 318 ( Pt 2) 649-56.
Stimulation of Ca(2+)-dependent membrane currents in Xenopus oocytes by microinjection of pyrimidine nucleotide-glucose conjugates. , Kim HY , Thomas D, Hanley MR., Mol Pharmacol. February 1, 1996; 49 (2): 360-4.
Chromatographic resolution of an intracellular calcium influx factor from thapsigargin-activated Jurkat cells. Evidence for multiple activities influencing calcium elevation in Xenopus oocytes. , Kim HY , Thomas D, Hanley MR., J Biol Chem. April 28, 1995; 270 (17): 9706-8.