Resultats de la cerca - Rodrigo X. Guillen
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1
<i>Drosophila</i>pericentrin requires interaction with calmodulin for its function at centrosomes and neuronal basal bodies but not at sperm basal bodies per Brian J. Galletta, Rodrigo X. Guillen, Carey J. Fagerstrom, Christopher Brownlee, Dorothy A. Lerit, Timothy L. Megraw, Gregory C. Rogers, Nasser M. Rusan
Publicat 2014Artigo -
2
Kinase domain autophosphorylation rewires the activity and substrate specificity of CK1 enzymes per Sierra N. Cullati, A. Chaikuad, Jun‐Song Chen, Jakob Gebel, Laura Tesmer, Rezart Zhubi, Jose Navarrete‐Perea, Rodrigo X. Guillen, Steven P. Gygi, Gerhard Hummer, Volker Dötsch, Stefan Knapp, Kathleen L. Gould
Publicat 2022Artigo -
3
The Cdc15 and Imp2 SH3 domains cooperatively scaffold a network of proteins that redundantly ensure efficient cell division in fission yeast per Liping Ren, Alaina H. Willet, Rachel H. Roberts-Galbraith, Nathan A. McDonald, Anna Feoktistova, Jun‐Song Chen, Haiming Huang, Rodrigo X. Guillen, Charles Boone, Sachdev S. Sidhu, Janel R. Beckley, Kathleen L. Gould
Publicat 2014Artigo
Eines de cerca:
Matèries relacionades
Biology
Cell biology
Biochemistry
Cell cycle
Gene
Genetics
Saccharomyces cerevisiae
Schizosaccharomyces pombe
Actin cytoskeleton
Autophosphorylation
Basal body
Calmodulin
Calmodulin-binding proteins
Cell
Cell Cycle Protein
Cell division
Centriole
Centrosome
Cytokinesis
Cytoskeleton
Drosophila melanogaster
Enzyme
Flagellum
Kinase
Microtubule
Mitosis
Neuroblast
Neurogenesis
Phosphoproteomics
Phosphorylation