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Cellular Mechanisms of Action of Mineralocorticoid Hormones

Cellular Mechanisms of Action of Mineralocorticoid Hormones
盐皮质激素作用的细胞机制
批准号:
8514578
负责人:
JOHN P. JOHNSON
金额:
$30.74万
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-05-01 至 2014-07-31

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英文摘要
DESCRIPTION (provided by applicant): Maintenance of extrecellular fluid volume homeostasis is essential for hemodynamic stability, and abnormalities of renal sodium handling have been linked to cardiovascular disease and hypertension. Ultimate regulation of sodium excretion occurs in the distal nephron via conductive transport through the amiloride sensitive epithelial Na+ channel (ENaC). ENaC expression and activity in the apical membrane of epithelial cells is the rate limiting step in Na+ reabsorption not only in the kidney collecting duct, but in airway epithelia and colon as well. Aldosterone is the major regulator of ENaC expression and activity in responsive epithelia. The long term objectives of this research are to define the mechanisms through which mineralocorticoid hormones regulate vectorial sodium transport in responsive epithelia and studies are designed to examine the mechanisms of aldosterone regulation of ENaC. Work in the current grant period has identified a specific methyltransferase which activates ENaC and knockdown of this protein blocks the early aldosterone response. Studies are now proposed to determine if this protein is required for early aldosterone action via genomic or non-genomic pathways and determine how aldosterone regulates its activity. We have demonstrated that ENaC trafficks to the apical membrane of epithelial cells in lipid rafts and developed a model of ENaC trafficking in cultured epithelial cells. Cells deprived of aldosterone develop a loss of Na+ reabsorptive activity along with a loss of the cellular recycling compartment for ENaC. The recycling compartment and Na+ reabsorptive phenotype are restored over time by aldosterone. Restoration of the ENaC recycling pathway is associated with adlosterone up-regulation of multiple proteins in the endosomal compartment. We will examine the mechanisms by which aldosterone regulates the apical expression of ENaC from endosomal and/or recycling pathways and determine what specific aldosterone-regulated proteins control the activity and expression of ENaC in endosomes and exocyst compartments to support apical translocation of ENaC in Na+ reabsorptive states. PUBLIC HEALTH RELEVANCE: Aldosterone is the major hormone which regulates sodium reabsorption in the kidney in mammals. Abnormalities of sodium handling can lead to diseases such as hypertension and heart failure and have been implicated in the progression of cystic fibrosis lung disease. These studies are designed to determine the cellular mechanisms by which aldosterone regulates sodium reabsorption in kidney cells.
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Rapamycin inhibits protein kinase C activity and stimulates Na+ transport in A6 cells.
Rapamycin 抑制蛋白激酶 C 活性并刺激 A6 细胞中的 Na 转运。
DOI: 10.1074/jbc.271.50.32468
发表时间: 1996
期刊: The Journal of biological chemistry
影响因子: --
作者: [Rokaw,MD, West,M, Johnson,JP]
通讯作者: Johnson,JP
DOI: 10.1371/journal.pone.0078019
发表时间: 2013
期刊: PloS one
影响因子: 3.7
作者: [Weixel KM, Marciszyn A, Alzamora R, Li H, Fischer O, Edinger RS, Hallows KR, Johnson JP]
通讯作者: Johnson JP
Regulation of the amiloride-sensitive epithelial sodium channel by syntaxin 1A.
Syntaxin 1A 对阿米洛利敏感的上皮钠通道的调节。
DOI: 10.1074/jbc.274.43.30345
发表时间: 1999
期刊: The Journal of biological chemistry
影响因子: --
作者: [Qi,J, Peters,KW, Liu,C, Wang,JM, Edinger,RS, Johnson,JP, Watkins,SC, Frizzell,RA]
通讯作者: Frizzell,RA
DOI: 10.1152/ajpcell.1998.274.5.c1245
发表时间: 1998-05
期刊: American journal of physiology. Cell physiology
影响因子: --
作者: [D. J. Morris;S. Latif;M. D. Rokaw;C. Watlington;John P. Johnson]
通讯作者: D. J. Morris;S. Latif;M. D. Rokaw;C. Watlington;John P. Johnson
6
    Trafficking and Regulation of the Epithelial Na+ Channel
    Trafficking and Regulation of the Epithelial Na+ Channel
    Trafficking and Regulation of the Epithelial Na+ Channel
    Trafficking and Regulation of the Epithelial Na+ Channel
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