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1.
Pflugers Arch ; 468(4): 573-91, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26582426

RESUMO

Anions such as Cl(-) and HCO3 (-) are well known to play an important role in glucose-stimulated insulin secretion (GSIS). In this study, we demonstrate that glucose-induced Cl(-) efflux from ß-cells is mediated by the Ca(2+)-activated Cl(-) channel anoctamin 1 (Ano1). Ano1 expression in rat ß-cells is demonstrated by reverse transcriptase-polymerase chain reaction, western blotting, and immunohistochemistry. Typical Ano1 currents are observed in whole-cell and inside-out patches in the presence of intracellular Ca(++): at 1 µM, the Cl(-) current is outwardly rectifying, and at 2 µM, it becomes almost linear. The relative permeabilities of monovalent anions are NO3 (-) (1.83 ± 0.10) > Br(-) (1.42 ± 0.07) > Cl(-) (1.0). A linear single-channel current-voltage relationship shows a conductance of 8.37 pS. These currents are nearly abolished by blocking Ano1 antibodies or by the inhibitors 2-(5-ethyl-4-hydroxy-6-methylpyrimidin-2-ylthio)-N-(4-(4-methoxyphenyl)thiazol-2-yl)acetamide (T-AO1) and tannic acid (TA). These inhibitors induce a strong decrease of 16.7-mM glucose-stimulated action potential rate (at least 87 % on dispersed cells) and a partial membrane repolarization with T-AO1. They abolish or strongly inhibit the GSIS increment at 8.3 mM and at 16.7 mM glucose. Blocking Ano1 antibodies also abolish the 16.7-mM GSIS increment. Combined treatment with bumetanide and acetazolamide in low Cl(-) and HCO3 (-) media provokes a 65 % reduction in action potential (AP) amplitude and a 15-mV AP peak repolarization. Although the mechanism triggering Ano1 opening remains to be established, the present data demonstrate that Ano1 is required to sustain glucose-stimulated membrane potential oscillations and insulin secretion.


Assuntos
Canais de Cloreto/metabolismo , Glucose/metabolismo , Células Secretoras de Insulina/metabolismo , Insulina/metabolismo , Potenciais da Membrana , Animais , Anoctamina-1 , Cálcio/metabolismo , Células Cultivadas , Canais de Cloreto/antagonistas & inibidores , Cloretos/metabolismo , Exocitose , Humanos , Células Secretoras de Insulina/fisiologia , Camundongos , Camundongos Endogâmicos C57BL , Ratos , Ratos Wistar
2.
Cell Physiol Biochem ; 28(3): 491-6, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-22116362

RESUMO

In the thyroid, the transport of iodide from the extracellular space to the follicular lumen requires two steps: the transport in the cell at the basal side and in the lumen at the apical side. The first step is mediated by the Na(+)/I(-) symporter (NIS). In most reviews and textbooks, the second step is presented as mediated by pendrin. In this review, we analyze this assumption. There are several arguments supporting the concept that indeed pendrin plays an important role in thyroid physiology. However, biochemical, clinical and histological data on the thyroid of a patient with Pendred syndrome do not suggest an essential role in iodide transport, which is corroborated by the lack of a thyroid phenotype in pendrin knockout mice. Experiments in vivo and in vitro on polarized and unpolarized cells show that iodide is transported transport of iodide at the apex of the thyroid cell. Moreover, ectopic expression of pendrin in transfected non-thyroid cells is capable of mediating iodide efflux. It is concluded that pendrin may participate in the iodide efflux into thyroid lumen but not as the unique transporter. Moreover, another role of pendrin in mediating Cl(-)/HCO(3)(-) exchange and controlling luminal pH is suggested.


Assuntos
Proteínas de Transporte de Ânions/metabolismo , Iodetos/metabolismo , Glândula Tireoide/citologia , Glândula Tireoide/metabolismo , Animais , Proteínas de Transporte de Ânions/genética , Bócio Nodular/patologia , Perda Auditiva Neurossensorial/patologia , Transporte de Íons , Modelos Animais , Transportadores de Sulfato
3.
Endocrine ; 32(2): 197-205, 2007 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-18040894

RESUMO

Impaired glucose tolerance and overt diabetes mellitus are becoming increasingly common complications of cystic fibrosis (CF), most probably merely as a result of increased life expectancy. In order to understand the pathophysiology of cystic fibrosis-related diabetes (CFRD), knowledge on the possible expression and cell distribution of the cystic fibrosis transmembrane conductance regulator (CFTR) protein within the endocrine pancreas is required. In this report, we establish the first evidence for expression of CFTR protein in rat pancreatic islets by using independent techniques. First reverse transcriptase-polymerase chain reaction (RT-PCR) amplification showed that CFTR mRNA is present in isolated islets of Langerhans. Furthermore, the analysis of flow cytometry-separated islet cells indicated that the level of CFTR transcripts is significantly higher in the non-beta than in beta-cell populations. The expression of CFTR protein in rat islet cells was also demonstrated by Western blotting and the level of expression was also found significantly higher in the non-beta than in beta-cell populations. Last, in situ immunocytochemistry studies with two monoclonal antibodies recognizing different CFTR epitopes indicated that CFTR expression occurs mainly in glucagon-secreting alpha-cells.


Assuntos
Regulador de Condutância Transmembrana em Fibrose Cística/metabolismo , Células Secretoras de Glucagon/metabolismo , Ilhotas Pancreáticas/metabolismo , Animais , Anticorpos Monoclonais/imunologia , Anticorpos Monoclonais/metabolismo , Células Cultivadas , Fibrose Cística/complicações , Fibrose Cística/fisiopatologia , Regulador de Condutância Transmembrana em Fibrose Cística/imunologia , Diabetes Mellitus/etiologia , Diabetes Mellitus/fisiopatologia , Epitopos/imunologia , Feminino , Células Secretoras de Glucagon/citologia , Ilhotas Pancreáticas/citologia , RNA Mensageiro/metabolismo , Ratos , Ratos Wistar
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