Literature DB >> 23998804

High iodine blocks a Notch/miR-19 loop activated by the BRAF(V600E) oncoprotein and restores the response to TGFβ in thyroid follicular cells.

Cesar Seigi Fuziwara1, Edna Teruko Kimura.   

Abstract

BACKGROUND: Excess iodine inhibits thyroid follicular cell proliferation associated with TGFβ pathway activation, although thyroid cancers are frequently refractory to TGFβ signaling. The TGFβ pathway is predicted to be regulated by miR-17-92 cluster microRNAs. MicroRNAs are small noncoding RNAs that inhibit target mRNA translation and have emerged as potent modulators of tumorigenesis. Although the BRAF(V600E) mutation is the most prevalent alteration in thyroid cancer, the impact of iodine intake on BRAF-mediated oncogenesis remains unclear. Therefore, the aim of this study was to investigate the influence of high iodine on miR-17-92 transcriptional regulation and expression in thyroid cells expressing activated BRAF.
METHODS: Rat thyroid follicular cells that conditionally express BRAF(V600E) under doxycycline stimulation (PC-BRAF(V600E)-6) were derived from the PCCl3 line. These cells were treated with doxycycline for two days, in the absence or presence of 10 μM sodium iodide. The thyroid cancer cell lines BCPAP and KTC2 were also analyzed. Expression of the miR-17-92 cluster and Notch1 was analyzed by quantitative polymerase chain reaction, and expression of these genes was modulated by anti-miR or anti-Notch1 siRNAs transfection. Protein expression was assessed by Western blot. Luciferase assays were used to quantify Smad4 3'-UTR/miR-19 interaction and Notch signaling activation. TGFβ responsiveness was evaluated by cell cycle analysis of TGFβ-treated cells.
RESULTS: High iodine blocked BRAF(V600E)-induced upregulation of miR-17-92, including miR-19a/b. miR-17-92 promoter region analysis revealed a putative binding site for Hes1, a transcription factor responsive to Notch signaling. Notch-1 overexpression resulted in miR-19 upregulation in normal thyroid cells, while Notch-1 knockdown blocked BRAF-induced miR-19 expression. Moreover, in anaplastic thyroid cancer cells, Notch-1 knockdown reduced miR-19. Expression of BRAF(V600E) decreased Smad4 protein in normal thyroid cells. Smad4 was validated as a miR-19 target by luciferase assays, which revealed reduced luminescence associated with miR-19 interaction in Smad4 3'-UTR. Iodine treatment restored Smad4 levels in BRAF-activated cells, resulting in enhanced G1-cell cycle arrest in response to TGFβ. Moreover, this effect was mimicked in papillary thyroid cancer cells treated with anti-miR-19.
CONCLUSION: High iodine abrogates BRAF(V600E)-induced activation of miR-19, a newly identified Smad4 regulator, through Notch pathway inhibition and restores responsiveness to TGFβ signaling. Our results indicate that iodine exerts protective effects in thyroid cells, attenuating acute BRAF oncogene-mediated microRNA deregulation.

Entities:  

Mesh:

Substances:

Year:  2014        PMID: 23998804      PMCID: PMC3949441          DOI: 10.1089/thy.2013.0398

Source DB:  PubMed          Journal:  Thyroid        ISSN: 1050-7256            Impact factor:   6.568


  31 in total

1.  Q-Gene: processing quantitative real-time RT-PCR data.

Authors:  Perikles Simon
Journal:  Bioinformatics       Date:  2003-07-22       Impact factor: 6.937

2.  The role of microRNA genes in papillary thyroid carcinoma.

Authors:  Huiling He; Krystian Jazdzewski; Wei Li; Sandya Liyanarachchi; Rebecca Nagy; Stefano Volinia; George A Calin; Chang-Gong Liu; Kaarle Franssila; Saul Suster; Richard T Kloos; Carlo M Croce; Albert de la Chapelle
Journal:  Proc Natl Acad Sci U S A       Date:  2005-12-19       Impact factor: 11.205

3.  Expression of SMAD proteins, TGF-beta/activin signaling mediators, in human thyroid tissues.

Authors:  Sílvia E Matsuo; Ana Paula Z P Fiore; Simone M Siguematu; Kátia N Ebina; Celso U M Friguglietti; Maria C Ferro; Marco A V Kulcsar; Edna T Kimura
Journal:  Arq Bras Endocrinol Metabol       Date:  2010-06

4.  Escape from the acute Wolff-Chaikoff effect is associated with a decrease in thyroid sodium/iodide symporter messenger ribonucleic acid and protein.

Authors:  P H Eng; G R Cardona; S L Fang; M Previti; S Alex; N Carrasco; W W Chin; L E Braverman
Journal:  Endocrinology       Date:  1999-08       Impact factor: 4.736

5.  c-Myc-regulated microRNAs modulate E2F1 expression.

Authors:  Kathryn A O'Donnell; Erik A Wentzel; Karen I Zeller; Chi V Dang; Joshua T Mendell
Journal:  Nature       Date:  2005-06-09       Impact factor: 49.962

6.  A microRNA polycistron as a potential human oncogene.

Authors:  Lin He; J Michael Thomson; Michael T Hemann; Eva Hernando-Monge; David Mu; Summer Goodson; Scott Powers; Carlos Cordon-Cardo; Scott W Lowe; Gregory J Hannon; Scott M Hammond
Journal:  Nature       Date:  2005-06-09       Impact factor: 49.962

7.  Iodide induces transforming growth factor beta 1 (TGF-beta 1) mRNA in sheep thyroid cells.

Authors:  R Yuasa; M C Eggo; J Meinkoth; W H Dillmann; G N Burrow
Journal:  Thyroid       Date:  1992       Impact factor: 6.568

Review 8.  MicroRNAs in cancer: small molecules with a huge impact.

Authors:  Marilena V Iorio; Carlo M Croce
Journal:  J Clin Oncol       Date:  2009-11-02       Impact factor: 44.544

9.  High iodine concentration attenuates RET/PTC3 oncogene activation in thyroid follicular cells.

Authors:  Ana Paula Zen Petisco Fiore; Cesar Seigi Fuziwara; Edna Teruko Kimura
Journal:  Thyroid       Date:  2009-11       Impact factor: 6.568

10.  A microRNA expression signature of human solid tumors defines cancer gene targets.

Authors:  Stefano Volinia; George A Calin; Chang-Gong Liu; Stefan Ambs; Amelia Cimmino; Fabio Petrocca; Rosa Visone; Marilena Iorio; Claudia Roldo; Manuela Ferracin; Robyn L Prueitt; Nozumu Yanaihara; Giovanni Lanza; Aldo Scarpa; Andrea Vecchione; Massimo Negrini; Curtis C Harris; Carlo M Croce
Journal:  Proc Natl Acad Sci U S A       Date:  2006-02-03       Impact factor: 11.205

View more
  22 in total

1.  A Novel miR-24-TCF1 Axis in Modulating Effector T Cell Responses.

Authors:  Sunglim Cho; Cheng-Jang Wu; Duc T Nguyen; Ling-Li Lin; Mei-Chi Chen; Aly Azeem Khan; Bi-Huei Yang; Wenxian Fu; Li-Fan Lu
Journal:  J Immunol       Date:  2017-04-12       Impact factor: 5.422

Review 2.  MicroRNAs in the thyroid.

Authors:  Myriem Boufraqech; Joanna Klubo-Gwiezdzinska; Electron Kebebew
Journal:  Best Pract Res Clin Endocrinol Metab       Date:  2016-11-01       Impact factor: 4.690

3.  miR18a and miR19a Recruit Specific Proteins for Splicing in Thyroid Cancer Cells.

Authors:  Marcelo M Paiva; Edna T Kimura; Patricia P Coltri
Journal:  Cancer Genomics Proteomics       Date:  2017 Sep-Oct       Impact factor: 4.069

4.  Case-Control Study of Papillary Thyroid Carcinoma on Urinary and Dietary Iodine Status in South Korea.

Authors:  Joon-Hyop Lee; Ra-Yeong Song; Jin Wook Yi; Hyeong Won Yu; Hyungju Kwon; Su-Jin Kim; Young Jun Chai; June Young Choi; Jae Hoon Moon; Kyu Eun Lee; Young Joo Park; Sue K Park
Journal:  World J Surg       Date:  2018-05       Impact factor: 3.352

5.  Changing patterns of thyroid cancer in different stages of Universal Salt Iodization in Peking Union Medical College Hospital, 1986-2018.

Authors:  Ziyang Zeng; Kang Li; Weiming Kang; Jianchun Yu; Xianze Wang; Zimu Zhang; Juan Sun; Siwen Ouyang
Journal:  Gland Surg       Date:  2020-10

6.  Muscle Stem Cell Function Is Impaired in β2-Adrenoceptor Knockout Mice.

Authors:  Tatiana E Koike; Cesar S Fuziwara; Patricia C Brum; Edna T Kimura; Thomas A Rando; Elen H Miyabara
Journal:  Stem Cell Rev Rep       Date:  2022-03-04       Impact factor: 6.692

7.  Notch1 Signaling Regulates the Aggressiveness of Differentiated Thyroid Cancer and Inhibits SERPINE1 Expression.

Authors:  Xiao-Min Yu; Renata Jaskula-Sztul; Maria R Georgen; Zviadi Aburjania; Yash R Somnay; Glen Leverson; Rebecca S Sippel; Ricardo V Lloyd; Brian P Johnson; Herbert Chen
Journal:  Clin Cancer Res       Date:  2016-02-04       Impact factor: 12.531

8.  miR-19b regulates hTERT mRNA expression through targeting PITX1 mRNA in melanoma cells.

Authors:  Takahito Ohira; Sunamura Naohiro; Yuji Nakayama; Mitsuhiko Osaki; Futoshi Okada; Mitsuo Oshimura; Hiroyuki Kugoh
Journal:  Sci Rep       Date:  2015-02-03       Impact factor: 4.379

9.  Iodine intake as a risk factor for thyroid cancer: a comprehensive review of animal and human studies.

Authors:  Michael B Zimmermann; Valeria Galetti
Journal:  Thyroid Res       Date:  2015-06-18

Review 10.  Insights into Regulation of the miR-17-92 Cluster of miRNAs in Cancer.

Authors:  Cesar Seigi Fuziwara; Edna Teruko Kimura
Journal:  Front Med (Lausanne)       Date:  2015-09-08
View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.