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Molecules and Cells|May 10, 2006
The study of Bfa1p(E438K) suggests that Bfa1 control the mitotic exit network in different mechanisms depending on different checkpoint-activating signalsJunwon Kim, Kiwon SongThe Journal of Organic Chemistry|April 2, 2002
Direct synthesis of 5-substituted naphthoquinonesGeorge A Kraus, Junwon KimBiomolecules|April 23, 2022
Cla4p Kinase Activity Is Down-Regulated by Fus3p during Yeast MatingJunwon Kim, Mark D RoseGenes & Development|May 17, 2012
A mechanism for the coordination of proliferation and differentiation by spatial regulation of Fus2p in budding yeastJunwon Kim, Mark D RosePlos Genetics|December 8, 2015
Stable Pseudohyphal Growth in Budding Yeast Induced by Synergism between Septin Defects and Altered MAP-kinase SignalingJunwon Kim, Mark D RoseGenes to Cells : Devoted to Molecular & Cellular Mechanisms|May 19, 2004
The C-terminus of Bfa1p in budding yeast is essential to induce mitotic arrest in response to diverse checkpoint-activating signalsJunwon Kim, John Jeong, Kiwon SongCell Cycle (Georgetown, Tex.)|December 9, 2014
The C-terminal domains of human neurofibromin and its budding yeast homologs Ira1 and Ira2 regulate the metaphase to anaphase transitionGuangming Luo, Junwon Kim, Kiwon SongSynthetic Communications|October 6, 2007
Phytochemicals from Echinacea and Hypericum: A Direct Synthesis of IsoligularoneGeorge A Kraus, Jaehoon Bae, Junwon KimMolecular Biology of the Cell|August 1, 2008
Different levels of Bfa1/Bub2 GAP activity are required to prevent mitotic exit of budding yeast depending on the type of perturbationsJunwon Kim, Selma Sun Jang, Kiwon SongPageof 6