Literature DB >> 23329648

p42/p44 MAPK-mediated Stat3Ser727 phosphorylation is required for progestin-induced full activation of Stat3 and breast cancer growth.

Mercedes Tkach1, Cinthia Rosemblit, Martín A Rivas, Cecilia J Proietti, María Celeste Díaz Flaqué, María Florencia Mercogliano, Wendy Beguelin, Esteban Maronna, Pablo Guzmán, Felipe G Gercovich, Ernesto Gil Deza, Patricia V Elizalde, Roxana Schillaci.   

Abstract

Stat3 is a signaling node for multiple oncogenic pathways and is therefore frequently active in breast cancer. As experimental and clinical evidence reveals that progestins are key players in controlling mammary gland tumorigenesis, we studied Stat3 participation in this event. We have previously shown that progestins induce Stat3Tyr705 phosphorylation and its transcriptional activation in breast cancer cells. In this study, we demonstrate that progestins also induce Stat3 phosphorylation at Ser727 residue, which occurs via activation of c-Src/p42/p44 MAPK pathways in murine progestin-dependent C4HD cells and in T-47D cells. Expression of a Stat3S727A vector, which carries a serine-to-alanine substitution at codon 727, shows that Stat3Ser727 phosphorylation is required for full transcriptional activation of cyclin D1 gene expression by progestins and for in vivo Stat3 recruitment on cyclin D1 promoter. Transfection of Stat3S727A in murine and human breast cancer cells abolished progestin-induced in vitro and in vivo growth. Moreover, we found a positive correlation between progesterone receptor expression and nuclear localization of Stat3Ser727 phosphorylation in breast cancer biopsies. These data highlight Stat3 phosphorylation in Ser727 residue as a nongenomic action by progestins, necessary to promote breast cancer growth.

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Year:  2013        PMID: 23329648     DOI: 10.1530/ERC-12-0194

Source DB:  PubMed          Journal:  Endocr Relat Cancer        ISSN: 1351-0088            Impact factor:   5.678


  27 in total

1.  Endothelin-1 stimulates expression of cyclin D1 and S-phase kinase-associated protein 2 by activating the transcription factor STAT3 in cultured rat astrocytes.

Authors:  Yutaka Koyama; Satoshi Sumie; Yasutaka Nakano; Tomoya Nagao; Shiho Tokumaru; Shotaro Michinaga
Journal:  J Biol Chem       Date:  2019-01-22       Impact factor: 5.157

2.  p38 Expression and Modulation of STAT3 Signaling in Oral Cancer.

Authors:  I Gkouveris; N Nikitakis; A Sklavounou
Journal:  Pathol Oncol Res       Date:  2018-03-21       Impact factor: 3.201

3.  WMJ-8-B, a novel hydroxamate derivative, induces MDA-MB-231 breast cancer cell death via the SHP-1-STAT3-survivin cascade.

Authors:  Yu-Fan Chuang; Shiu-Wen Huang; Ya-Fen Hsu; Meng-Chieh Yu; George Ou; Wei-Jan Huang; Ming-Jen Hsu
Journal:  Br J Pharmacol       Date:  2017-08-01       Impact factor: 8.739

Review 4.  STAT3 in medulloblastoma: a key transcriptional regulator and potential therapeutic target.

Authors:  Anwar Zaiter; Zahraa F Audi; Fatima Shawraba; Zahraa Saker; Hisham F Bahmad; Rami H Nabha; Hayat Harati; Sanaa M Nabha
Journal:  Mol Biol Rep       Date:  2022-06-18       Impact factor: 2.316

5.  JNK1/2 expression and modulation of STAT3 signaling in oral cancer.

Authors:  Ioannis Gkouveris; Nikolaos Nikitakis; Maria Karanikou; George Rassidakis; Alexandra Sklavounou
Journal:  Oncol Lett       Date:  2016-05-24       Impact factor: 2.967

6.  STAT3 serine 727 phosphorylation influences clinical outcome in glioblastoma.

Authors:  Guo-Shi Lin; Yu-Peng Chen; Zhi-Xiong Lin; Xing-Fu Wang; Zong-Qing Zheng; Long Chen
Journal:  Int J Clin Exp Pathol       Date:  2014-05-15

7.  Control of adipogenic commitment by a STAT3-VSTM2A axis.

Authors:  Manal Al Dow; Maruhen Amir Datsch Silveira; Audrée Poliquin; Laura Tribouillard; Éric Fournier; Eva Trébaol; Blandine Secco; Romain Villot; Félix Tremblay; Steve Bilodeau; Mathieu Laplante
Journal:  Am J Physiol Endocrinol Metab       Date:  2020-11-16       Impact factor: 4.310

8.  Bupivacaine inhibits the malignant biological behavior of oral squamous cell carcinoma cells by inhibiting the activation of ERK1/2 and STAT3.

Authors:  Zhongchao Wang; Jie Zhang; Yongmei Wen; Pin Wang; Liyuan Fan
Journal:  Ann Transl Med       Date:  2021-05

9.  Emerin Represses STAT3 Signaling through Nuclear Membrane-Based Spatial Control.

Authors:  Byongsun Lee; Seungjae Lee; Younggwang Lee; Yongjin Park; Jaekyung Shim
Journal:  Int J Mol Sci       Date:  2021-06-22       Impact factor: 5.923

10.  The STAT3-Ser/Hes3 signaling axis: an emerging regulator of endogenous regeneration and cancer growth.

Authors:  Steven W Poser; Deric M Park; Andreas Androutsellis-Theotokis
Journal:  Front Physiol       Date:  2013-10-01       Impact factor: 4.566

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