about
Prostate cancer stem cells: the role of androgen and estrogen receptorsPI3-kinase in concert with Src promotes the S-phase entry of oestradiol-stimulated MCF-7 cellsTwo domains of the progesterone receptor interact with the estrogen receptor and are required for progesterone activation of the c-Src/Erk pathway in mammalian cellsInhibition of the SH3 domain-mediated binding of Src to the androgen receptor and its effect on tumor growth.Androgen-induced cell migration: role of androgen receptor/filamin A associationNon-transcriptional action of oestradiol and progestin triggers DNA synthesis.Oestradiol stimulates tyrosine phosphorylation and hormone binding activity of its own receptor in a cell-free system.Nuclear receptor-induced transcription is driven by spatially and timely restricted waves of ROS. The role of Akt, IKKα, and DNA damage repair enzymes.Epigenetic drugs against cancer: an evolving landscape.Targeting androgen receptor/Src complex impairs the aggressive phenotype of human fibrosarcoma cells.Rapid signalling pathway activation by androgens in epithelial and stromal cells.Cross-talk between androgen receptor/filamin A and TrkA regulates neurite outgrowth in PC12 cellsRole of non-genomic androgen signalling in suppressing proliferation of fibroblasts and fibrosarcoma cellsAndrogen-stimulated DNA synthesis and cytoskeletal changes in fibroblasts by a nontranscriptional receptor action.Src-dependent signalling pathway regulation by sex-steroid hormones: therapeutic implications.Hormone-dependent nuclear export of estradiol receptor and DNA synthesis in breast cancer cells.Integrating signals between cAMP and MAPK pathways in breast cancer.Signaling-dependent nuclear export of estradiol receptor controls cell cycle progression in breast cancer cells.Cell proliferation regulated by estradiol receptor: Therapeutic implications.Metformin inhibits androgen-induced IGF-IR up-regulation in prostate cancer cells by disrupting membrane-initiated androgen signaling.Targeting rapid action of sex steroid receptors in breast and prostate cancers.Polyproline and Tat transduction peptides in the study of the rapid actions of steroid receptors.Phosphorylation of estradiol receptor on tyrosine and interaction of estradiol and glucocorticoid receptors with antiphosphotyrosine antibodies.Non-genomic androgen action regulates proliferative/migratory signaling in stromal cells.Inhibition of p110δ PI3K prevents inflammatory response and restenosis after artery injury.Recent advances on bisphenol-A and endocrine disruptor effects on human prostate cancer.Extranuclear partners of androgen receptor: at the crossroads of proliferation, migration, and neuritogenesis.Protein-tyrosine phosphatase H1 increases breast cancer sensitivity to antiestrogens by dephosphorylating estrogen receptor at Tyr537.Tyrosine phosphorylation of estradiol receptor by Src regulates its hormone-dependent nuclear export and cell cycle progression in breast cancer cells.Analysis of androgen receptor rapid actions in cellular signaling pathways: receptor/Src association.Cross talk between epidermal growth factor (EGF) receptor and extra nuclear steroid receptors in cell lines.Role of atypical protein kinase C in estradiol-triggered G1/S progression of MCF-7 cells.Sex-steroid hormones and EGF signalling in breast and prostate cancer cells: targeting the association of Src with steroid receptors.Inhibition of estradiol receptor/Src association and cell growth by an estradiol receptor alpha tyrosine-phosphorylated peptide.Crosstalk between EGFR and extranuclear steroid receptors.Steroid receptor regulation of epidermal growth factor signaling through Src in breast and prostate cancer cells: steroid antagonist action.cAMP signaling selectively influences Ras effectors pathways.Protein tyrosine phosphorylation and estradiol action.Steroid signaling activation and intracellular localization of sex steroid receptors.Phosphorylation of H3 serine 10 by IKKα governs cyclical production of ROS in estrogen-induced transcription and ensures DNA wholeness
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P106
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0000-0002-4197-2055