Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats

碩士 === 國立成功大學 === 藥理學研究所 === 98 === Diabetic cardiomyopathy as diabetes-specific complication refers to a disease process which eventually leads to left ventricular hypertrophy and diastolic and systolic dysfunction. Recent reports have shown that hyperglycemia induces reactive oxygen species (ROS)...

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Main Authors: Jia-RuLiang, 梁嘉茹
Other Authors: Juei-Tang Cheng
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/75222632820759482045
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spelling ndltd-TW-098NCKU55500072015-11-06T04:03:46Z http://ndltd.ncl.edu.tw/handle/75222632820759482045 Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats GATA-4在糖尿病大鼠心臟對於抑制型旋轉蛋白調控之研究 Jia-RuLiang 梁嘉茹 碩士 國立成功大學 藥理學研究所 98 Diabetic cardiomyopathy as diabetes-specific complication refers to a disease process which eventually leads to left ventricular hypertrophy and diastolic and systolic dysfunction. Recent reports have shown that hyperglycemia induces reactive oxygen species (ROS) in cardiomyocytes, which contributes to diabetic cardiomyopathy. In this study, we observed the lower cardiac output in STZ-induced diabetic rats. The expression of cardiac troponin I (cTnI) and level of GATA-4 phosphorylation was increased. This changes could be reversed by insulin or phlorizin pretreatment. We also demonstrated that the condition of hyperglycemia was failed to increased the expression of cTnI, when GATA-4 is absent. Activation of ERK is known as its ability to phosphorylate serine105 of GATA4, and this had been reported to increase the DNA binding activity of this transcription factor. On the other hand, GSK-3β could directly interact with GATA-4 and cause GATA4 exported from nuclear. In current study, ROS production, higher level of cTnI expression and GATA-4 phosphorylation were observed in high glucose (HG)-treated H9c2 cells. GATA-4 nuclear translocalization and GSK-3β ser9 phosphorylation level were elevated in HG treated H9c2 cells. These changes could be reversed in the presence of tiron (ROS scavengers) , PD98059 (MEK/ERK inhibitors), and GATA-4 RNAi. Results of cell contractility assay also indicate that HG decreased contractility of H9c2 cells. Further more, contractilities was not affected by HG in H9c2 cells after GATA-4 knockdown. Taken together, we have demonstrated that hyperglycemia cause systolic dysfunction and elevatd expression of cTnI in cardiomyocytes through GATA-4 phosphorylation. Juei-Tang Cheng 鄭瑞棠 2010 學位論文 ; thesis 59 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 國立成功大學 === 藥理學研究所 === 98 === Diabetic cardiomyopathy as diabetes-specific complication refers to a disease process which eventually leads to left ventricular hypertrophy and diastolic and systolic dysfunction. Recent reports have shown that hyperglycemia induces reactive oxygen species (ROS) in cardiomyocytes, which contributes to diabetic cardiomyopathy. In this study, we observed the lower cardiac output in STZ-induced diabetic rats. The expression of cardiac troponin I (cTnI) and level of GATA-4 phosphorylation was increased. This changes could be reversed by insulin or phlorizin pretreatment. We also demonstrated that the condition of hyperglycemia was failed to increased the expression of cTnI, when GATA-4 is absent. Activation of ERK is known as its ability to phosphorylate serine105 of GATA4, and this had been reported to increase the DNA binding activity of this transcription factor. On the other hand, GSK-3β could directly interact with GATA-4 and cause GATA4 exported from nuclear. In current study, ROS production, higher level of cTnI expression and GATA-4 phosphorylation were observed in high glucose (HG)-treated H9c2 cells. GATA-4 nuclear translocalization and GSK-3β ser9 phosphorylation level were elevated in HG treated H9c2 cells. These changes could be reversed in the presence of tiron (ROS scavengers) , PD98059 (MEK/ERK inhibitors), and GATA-4 RNAi. Results of cell contractility assay also indicate that HG decreased contractility of H9c2 cells. Further more, contractilities was not affected by HG in H9c2 cells after GATA-4 knockdown. Taken together, we have demonstrated that hyperglycemia cause systolic dysfunction and elevatd expression of cTnI in cardiomyocytes through GATA-4 phosphorylation.
author2 Juei-Tang Cheng
author_facet Juei-Tang Cheng
Jia-RuLiang
梁嘉茹
author Jia-RuLiang
梁嘉茹
spellingShingle Jia-RuLiang
梁嘉茹
Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
author_sort Jia-RuLiang
title Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
title_short Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
title_full Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
title_fullStr Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
title_full_unstemmed Role of GATA-4 in the change of cardiac troponin I expression in type-1 diabetic rats
title_sort role of gata-4 in the change of cardiac troponin i expression in type-1 diabetic rats
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/75222632820759482045
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