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Master's Dissertation
DOI
https://doi.org/10.11606/D.5.2018.tde-17082018-095039
Document
Author
Full name
João Nilton Barreto Andrade
E-mail
Institute/School/College
Knowledge Area
Date of Defense
Published
São Paulo, 2018
Supervisor
Committee
Machado, Ubiratan Fabres (President)
Caperuto, Luciana Chagas
Evangelista, Fabiana de Sant'Anna
Giannella, Maria Lucia Cardillo Correa
Title in Portuguese
O SP1 (transcription factor Sp1) participa da regulação transcricional do Slc2a4 mediada pelo receptor  de estrógeno ER-alfa em adipócitos 3T3-L1
Keywords in Portuguese
Diabetes mellitus tipo 2
Estradiol
Fator de transcrição SP1
Receptores estrogênicos
Resistência à insulina
Transportador de glicose tipo 4
Abstract in Portuguese
O diabetes mellitus tipo 2 (DM2) é caracterizado pela presença de resistência à insulina, a qual pode ser modulada pelo estrógeno, tanto em fêmeas como em machos. Nesse processo, o transportador de glicose GLUT4 (gene Slc2a4, solute carrier family 2 member 4) desempenha papel importante, pois aumento da expressão do GLUT4 melhora o controle glicêmico. Estradiol (E2) regula a expressão do Slc2a4 por meio do balanço dos efeitos contrários de seus receptores (ERs): ER-alfa estimula e ER-beta inibe a expressão. Efeitos transcricionais dos ERs envolvem a participação de co-reguladores, destacadamente o SP1 (transcription factor Sp1), potente estimulador do Slc2a4. Entretanto, o papel do SP1 na regulação do Slc2a4 mediada pelos ERs é desconhecido; e este foi o objetivo do presente estudo. Investigou-se adipócitos maduros 3T3-L1, tratados por 24 horas com E2, agonista de ER-alfa (PPT) ou agonista de ER-beta (DPN). Avaliou-se: a expressão gênica (RT-qPCR) de Slc2a4 e Sp1; o conteúdo (Western blotting) total de GLUT4 e o nuclear de ER-alfa/beta e SP1; a atividade de ligação do SP1 no Slc2a4 (ensaio de mobilidade eletroforética); e a formação de complexos SP1/ER-alfa (imunoprecipitação). Os resultados confirmaram que E2 aumenta a expressão de Slc2a4/GLUT4 pela ação preponderante do ER-alfa. O agonista PPT aumentou: o conteúdo nuclear de SP1, a interação SP1/ER-alfa e a atividade de ligação do SP1 no Slc2a4. O agonista DPN indicou que a ação repressora do ER-beta não envolve o SP1. Conclui-se que o efeito estimulador do ER-alfa na expressão do Slc2a4 envolve mecanismo de transativação gênica via SP1. Essas observações colocam a cooperação ER-alfa/SP1 como um novo alvo para o desenvolvimento de medidas terapêuticas para resistência à insulina e diabetes mellitus tipo 2
Title in English
SP1 (transcription factor Sp1) participates in the transcriptional regulation of Slc2a4 mediated by estrogen receptor ER-alpha in 3T3-L1 adipocytes
Keywords in English
Diabetes mellitus type 2
Estradiol
Glucose transporter type 4
Insulin resistance
Receptors estrogen
Transcription factor SP1
Abstract in English
Type 2 diabetes mellitus (T2DM) is characterized by insulin resistance, which can be modulated by estrogen in both females and males. In this process, the glucose transporter GLUT4 (solute carrier family 2 member 4 gene - Slc2a4) plays an important role, since increasing GLUT4 expression improves glycemic control. Estradiol (E2) regulates the expression of Slc2a4, by a mechanism in which estrogen receptors (ERs) play opposite effects: ER-alpha stimulates, whereas ER-beta inhibits the expression. Transcriptional effects of ERs involve co-regulators, notably the transcription factor SP1, a powerful enhancer of Slc2a4. However, the role of SP1 in the ERs-mediated regulation of Slc2a4 is unknown; and that was the aim of the present study. Differentiated adipocytes 3T3-L1 were treated (24 hours) with E2, ER-alpha agonist (PPT) or ER-beta agonist (DPN). It was analyzed: gene expression (RT-qPCR) of Slc2a4 and Sp1; total content o GLUT4 and nuclear content of ER-alpha/beta and SP1 (Western blotting); binding activity of SP1 into Slc2a4 promoter (electrophoretic mobility shift assay); and content of nuclear SP1/ER-alpha complexes (immunoprecipitation). Results confirmed that E2 increases the expression of Slc2a4/GLUT4, by the dominant effect of ER-alpha. The ER-alpha agonist PPT increased the nuclear content of SP1, the interaction of SP1/ER-alpha, and the binding activity of SP1 into the Slc2a4. The agonist DPN evinced that ER-beta activity does not involve the SP1. In conclusion, the enhancer effect of ER-alpha upon Slc2a4 gene expression involves a transactivation mechanism via SP1. This observation point outs the cooperation of ER-alpha/SP1 as a new target for the development of approaches to treat insulin resistance and T2DM
 
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Publishing Date
2018-08-17
 
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