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1.
Endocrinology ; 164(2)2022 12 19.
Artigo em Inglês | MEDLINE | ID: mdl-36461668

RESUMO

Estrogen acting through estrogen receptor ß (ERß) has been shown to oppose the stimulation of cardiac myocytes and cardiac fibroblasts that results in cardiac hypertrophy and fibrosis. Previous work has implicated signal transduction from ERß as being important to the function of estrogen in this regard. Here we address whether membrane ERß is sufficient to oppose key mechanisms by which angiotensin II (AngII) stimulates cardiac cell pathology. To do this we first defined essential structural elements within ERß that are necessary for membrane or nuclear localization in cells. We previously determined that cysteine 418 is the site of palmitoylation of ERß that is required and sufficient for cell membrane localization in mice and is the same site in humans. Here we determined in Chinese hamster ovarian (CHO) cells, and mouse and rat myocytes and cardiac fibroblasts, the effect on multiple aspects of signal transduction by expressing wild-type (WT ) or a C418A-mutant ERß. To test the importance of the nuclear receptor, we determined a 4-amino acid deletion in the E domain of ERß that strongly blocked nuclear localization. Using these tools, we expressed WT and mutant ERß constructs into cardiomyocytes and cardiac fibroblasts from ERß-deleted mice. We determined the ability of estrogen to mitigate cell pathology stimulated by AngII and whether the membrane ERß is necessary and sufficient.


Assuntos
Cardiomegalia , Receptor beta de Estrogênio , Miócitos Cardíacos , Animais , Cricetinae , Camundongos , Ratos , Angiotensina II/farmacologia , Angiotensina II/metabolismo , Cardiomegalia/metabolismo , Receptor alfa de Estrogênio/metabolismo , Receptor beta de Estrogênio/genética , Receptor beta de Estrogênio/metabolismo , Estrogênios/farmacologia , Estrogênios/metabolismo , Miócitos Cardíacos/metabolismo , Miócitos Cardíacos/patologia
2.
Am J Physiol Gastrointest Liver Physiol ; 321(6): G682-G689, 2021 12 01.
Artigo em Inglês | MEDLINE | ID: mdl-34668398

RESUMO

Tissue injury healing is impaired in aging, and this impairment is caused in part by reduced angiogenesis. Melatonin, a neuroendocrine hormone that regulates sleep and circadian rhythm, is also produced in the gastrointestinal tract. The expression of melatonin receptors MT1 and MT2 in gastric endothelial cells and their roles in aging-related impairment of gastric angiogenesis have not been examined. We hypothesized that MT1 and MT2 expression is reduced in gastric endothelial cells of aging rats and that melatonin treatment can upregulate their expression and improve angiogenesis. We examined the expression of MT1 and MT2 in gastric endothelial cells (GECs) isolated from young and aging rats. We also examined the effects of melatonin treatment on angiogenesis, GEC mitochondrial function, expression of vascular endothelial growth factor (VEGF), its signaling receptor (VEGFR-2), and the inhibitor of apoptosis protein, survivin. Young and aging GECs expressed MT1 (in the cytoplasm and mitochondria) and MT2 (in nucleus and mitochondria). In aging GECs, MT1 and MT2 levels, in vitro angiogenesis, and mitochondrial membrane potential were significantly reduced (by 1.5-fold, 1.9-fold, 3.1-fold, and 1.63-fold, respectively) compared with young GECs. Melatonin treatment of aging GECs significantly increased MT1 and MT2 expression compared with the controls, induced nuclear translocation of MT1, and significantly ameliorated the aging-related impairment of angiogenesis and mitochondrial function. Aging GECs have significantly reduced MT1 and MT2 expression, angiogenesis, and mitochondrial membrane potential compared with young GECs. Treatment of aging GECs with melatonin increases expression of VEGF receptor and survivin and ameliorates aging-related impaired angiogenesis and mitochondrial function.NEW & NOTEWORTHY This study showed reduced expression of melatonin receptors MT1 and MT2, angiogenesis, and mitochondrial function in gastric endothelial cells (GECs) isolated from aging rats. Treatment of aging GECs with melatonin increases expression of VEGF receptor and survivin and ameliorates aging-related impaired angiogenesis and mitochondrial function. These studies provide new insight into the mechanisms of the aging-related impairment of angiogenesis and delayed tissue injury healing and provide a rationale for melatonin treatment to reverse these abnormalities.


Assuntos
Indutores da Angiogênese/farmacologia , Células Endoteliais/efeitos dos fármacos , Mucosa Gástrica/irrigação sanguínea , Melatonina/farmacologia , Mitocôndrias/efeitos dos fármacos , Neovascularização Fisiológica/efeitos dos fármacos , Survivina/metabolismo , Fator A de Crescimento do Endotélio Vascular/metabolismo , Fatores Etários , Animais , Células Cultivadas , Células Endoteliais/metabolismo , Mitocôndrias/metabolismo , Ratos Endogâmicos F344 , Receptor MT1 de Melatonina/agonistas , Receptor MT1 de Melatonina/metabolismo , Receptor MT2 de Melatonina/agonistas , Receptor MT2 de Melatonina/metabolismo , Transdução de Sinais
3.
Dig Dis Sci ; 59(2): 297-306, 2014 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-24385009

RESUMO

OBJECTIVES: Signal transducer and activator of transcription 3 (STAT3) is a transcription factor that directly upregulates VEGF, Ref-1, p21, and anti-apoptotic genes such as Bcl-xL. In this study, we hypothesized that STAT3 signaling is activated and provides a critical protective role that is required for enterocyte survival during the early phases of cysteamine-induced duodenal ulcers. METHODS: We studied the effect of inhibition of STAT3 activity on cysteamine-induced duodenal ulcers in rats and egr-1 knockout mice using STAT3/DNA binding assay, immunohistochemistry, immunoblot, and quantitative reverse transcriptase PCR analyses. RESULTS: We found that G-quartet oligodeoxynucleotides T40214, a specific inhibitor of STAT3/DNA binding, aggravated cysteamine-induced duodenal ulcers in rats 2.8-fold (p < 0.05). In the pre-ulcerogenic stage, cysteamine induced STAT3 tyrosine phosphorylation, its translocation to nuclei, an increased expression and nuclear translocation of importin α and ß in the rat duodenal mucosa. Cysteamine enhanced the binding of STAT3 to its DNA consensus sequences at 6, 12, and 24 h after cysteamine by 1.5-, 1.8-, and 3.5-fold, respectively, and activated the expression of STAT3 target genes such as VEGF, Bcl-xL, Ref-1, and STAT3-induced feedback inhibitor, a suppressor of cytokine signaling 3. We also demonstrated that egr-1 knockout mice, which are more susceptible to cysteamine-induced duodenal ulcers, had lower levels of STAT3 expression, its phosphorylation, expression of importin α or ß, and STAT3/DNA binding than wild-type mice in response to cysteamine. CONCLUSIONS: Thus, STAT3 represents an important new molecular mechanism in experimental duodenal ulceration.


Assuntos
Úlcera Duodenal/metabolismo , Duodeno/metabolismo , Fator de Transcrição STAT3/metabolismo , Transdução de Sinais , alfa Carioferinas/metabolismo , beta Carioferinas/metabolismo , Transporte Ativo do Núcleo Celular , Animais , Apoptose , Cisteamina , Modelos Animais de Doenças , Úlcera Duodenal/induzido quimicamente , Úlcera Duodenal/genética , Úlcera Duodenal/patologia , Úlcera Duodenal/prevenção & controle , Duodeno/efeitos dos fármacos , Duodeno/patologia , Proteína 1 de Resposta de Crescimento Precoce/deficiência , Proteína 1 de Resposta de Crescimento Precoce/genética , Epirizol , Feminino , Regulação da Expressão Gênica , Camundongos , Camundongos Knockout , Oligodesoxirribonucleotídeos/farmacologia , Fosforilação , Ratos , Ratos Sprague-Dawley , Fator de Transcrição STAT3/antagonistas & inibidores , Transdução de Sinais/efeitos dos fármacos , Fatores de Tempo , Tirosina
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