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Publication Listing for the MeSH term PHOSPHORYLATION. Found 15 abstracts

Allen JD, Jaffer ZM, Park SJ, Burgin S, Hofmann C, Sells MA, Chen S, Derr-Yellin E, Michels EG, McDaniel A, Bessler WK, Ingram DA, Atkinson SJ, Travers JB, Chernoff J, Clapp DW. p21-activated kinase regulates mast cell degranulation via effects on calcium mobilization and cytoskeletal dynamics. Blood. 2009 Mar;113(12):2695-705.
Sykes SM, Stanek TJ, Frank A, Murphy ME, McMahon SB. Acetylation of the DNA Binding Domain Regulates Transcription-independent Apoptosis by p53. Journal of Biological Chemistry. 2009 Jul;284(30):20197-205.   PMCID: PMC 2740446
Damianova R, Stefanova N, Cukierman E, Momchilova A, Pankov R. Three-dimensional matrix induces sustained activation of ERK1/2 via Src/Ras/Raf signaling pathway. Cell biology international. 2008 Feb;32(2):229-34.
Eytan E, Braunstein L, Ganoth D, Teichner A, Hittle JC, Yen TJ, Hershko A. Two different mitotic checkpoint inhibitors of the anaphase-promoting complex/cyclosome antagonize the action of the activator Cdc20. Proceedings of the National Academy of Sciences of the United States of America. 2008 Jul;105(27):9181-5.
McDaniel AS, Allen JD, Park SJ, Jaffer ZM, Michels EG, Burgin SJ, Chen S, Bessler WK, Hofmann C, Ingram DA, Chernoff J, Clapp DW. Pak1 regulates multiple c-Kit mediated Ras-MAPK gain-in-function phenotypes in Nf1(+/-) mast cells. Blood. 2008 Dec;112(12):4646-54.
Eswaran J, Lee WH, Debreczeni JE, Filippakopoulos P, Turnbull A, Fedorov O, Deacon SW, Peterson JR, Knapp S. Crystal structures of the p21-activated kinases PAK4, PAK5, and PAK6 reveal catalytic domain plasticity of active group IIPAKs. Structure (London, England : 1993). 2007 Feb;15(2):201-13.
Lee CH, Inoki K, Karbowniczek M, Petroulakis E, Sonenberg N, Henske EP, Guan KL. Constitutive mTOR activation in TSC mutants sensitizes cells to energy starvation and genomic damage via p53. EMBO Journal. 2007 Nov;26(23):4812-23.
Macias E, Kim Y, de Marval PL, Klein-Szanto A, Rodriguez-Puebla ML. Cdk2 deficiency decreases ras/CDK4-dependent malignant progression, but not myc-induced tumorigenesis. Cancer Research. 2007 Oct;67(20):9713-20.
Pietsch EC, Leu JI, Frank A, Dumont P, George DL, Murphy ME. The tetramerization domain of p53 is required for efficient BAK oligomerization. Cancer Biology & Therapy. 2007 Oct;6(10):1576-83.
Singh MK, Cowell L, Seo S, O'Neill GM, Golemis EA. Molecular basis for HEFI/NEDD9/Cas-L action as a multifunctional co-ordinator of invasion, apoptosis and cell cycle. Cell Biochemistry and Biophysics. 2007 Jan;48(1):54-72.
Stoyanova R, Hachem P, Hensley H, Khor LY, Mu Z, Hammond ME, Agrawal S, Pollack A. Antisense-MDM2 sensitizes lncap prostate cancer cells to androgen deprivation, radiation, and the combination in vivo. International Journal of Radiation Oncology Biology Physics. 2007 Jul;68(4):1151-60.
Thullberg M, Gad A, Beeser A, Chernoff J, Stromblad S. The kinase-inhibitory domain of p21-activated kinase 1 (PAK1) inhibits cell cycle progression independent of PAK1 kinase activity. Oncogene. 2007 Mar;26(12):1820-8.
Cai DP, Iyer A, Felekkis KN, Near RI, Luo ZJ, Chernoff J, Albanese C, Pestell RG, Lerner A. AND-34/BCAR3, a GDP exchange factor whose overexpression confers antiestrogen resistance, activates Rac, PAK1, and the cyclin D1 promoter. Cancer Research. 2003 Oct;63(20):6802-8.
Borgatti P, Martelli AM, Bellacosa A, Casto R, Massari L, Capitani S, Neri LM. Translocation of Akt/PKB to the nucleus of osteoblast-like MC3T3-E1 cells exposed to proliferative growth factors. Febs Letters. 2000 Jul;477(1-2):27-32.
Aoki M, Batista O, Bellacosa A, Tsichlis P, Vogt PK. The Akt kinase: Molecular determinants of oncogenicity. Proceedings of the National Academy of Sciences of the United States of America. 1998 Dec;95(25):14950-5.
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MeSH cloud from publications including the MeSH term PHOSPHORYLATION

PHOSPHORYLATION ACTIVATION apoptosis RECEPTOR TRANSLOCATION COMPLEX BREAST-CANCER CELLS PHOSPHATIDYLINOSITOL 3-KINASE IN-VIVO signal transduction INHIBITION PROTEIN-KINASE APOPTOSIS FOCAL ADHESION KINASE EXPRESSION p53 ADAPTER PROTEIN MUTATIONS MICE ALPHA-PAK MITOCHONDRIA TUBEROUS SCLEROSIS SIGNAL-TRANSDUCTION MC3T3-E1 osteoblast-like cell CELL-MIGRATION Extracellular matrix KINASE-ACTIVITY C PHOSPHOLIPASE-C CYCLIN-DEPENDENT KINASE-4 C-AKT Src PROTEIN-TYROSINE KINASE Akt CYCLOSOME RADIOSENSITIZATION MECHANISM TYROSINE oncogenic transformation mitosis MOUSE SKIN CARCINOGENESIS scaffolding adaptor SPINDLE CHECKPOINT RHEB BAK LOCALIZATION NEUROFIBROMATOSIS TYPE-1 GENE PKB RHO GTPASES EPIDERMAL-GROWTH-FACTOR GENE INSULIN-RECEPTOR D1 EXPRESSION P27(KIP1) MEDIATED TYROSINE TRANSDUCTION APC MDM2 HUMAN T-CELLS MIXED-BACKBONE OLIGONUCLEOTIDE COWDEN-DISEASE PDGF UBIQUITINATION P190 TRANSGENIC DEPENDENT PROTEIN-KINASE C-MYC III COLLAGEN-MATRIX HEF1 HUMAN B-CELLS FACTOR-INDUCED MIGRATION TRANSCRIPTION MAP KINASE DOCKING PROTEIN FAMILY GROWTH-FACTORS NEDD9 Ras ANEUPLOIDY GENE-PRODUCTS RAPAMYCIN CELL-CYCLE P53 PROTEIN ACCUMULATION protein kinase B INDUCED mTOR LYMPHOCYTES CELL-DEATH RAS CANCER CELL-LINES CHANNELS C-SRC protein PATHWAY CROSS-CASCADE FC-EPSILON-RI GERMLINE invasion TRANSFORMATION CDC42 MICROTUBULE PUMA DNA-DAMAGE TRANSGENIC CRK-ASSOCIATED SUBSTRATE antisense-MDM2 SRC TYROSINE KINASE BUDDING-YEAST Three-dimensional matrix WILD-TYPE P53 CAS-L RANDOMIZED TRIAL nucleus SERINE 338 ACTIVATED PROTEIN-KINASE MAMMALIAN TARGET oligomerization domain PTEN FAMILY P53-DEPENDENT APOPTOSIS PROTEIN metastasis CANCER rapamycin Fibronectin mitochondria DEFINITIVE RADIOTHERAPY ERK phosphoinositide 3-kinase SUPPRESSES TUMOR-GROWTH prostate cancer GAP ACTIVITY PROTEIN-KINASE-B GUANOSINE TRIPHOSPHATASES P21-ACTIVATED KINASES cell cycle p21-activated kinase 1 (PAK1)-cyclin D1-Rac-GTPase TUMOR-DEVELOPMENT platelet-derived growth factor RENAL ANGIOMYOLIPOMAS in vivo tumor model DEPENDENT PATHWAY SIGNALING PATHWAY BAX radiation ACTIVATION LOOP REVEALS insulin-like growth factor VAV MRI MICE DEFICIENT spindle checkpoint cell cycle-mitosis
Last updated on Wednesday, February 05, 2020