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PMID: 16236820 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Aldosterone-sensitive repression of ENaCalpha transcription by a histone H3 lysine-79 methyltransferase.

American journal of physiology. Cell physiology ·Vol. 290 ·No. 3 ·2006-03-00 ·Pages C936-46

Zhang W, Xia X, Jalal DI, Kuncewicz T, Xu W, Lesage GD, Kone BC

Abstract

Aldosterone is a major regulator of epithelial Na(+) absorption. One of its principal targets is the epithelial Na(+) channel alpha-subunit (ENaCalpha), principally expressed in the kidney collecting duct, lung, and colon. Models of aldosterone-mediated trans-activation of the ENaCalpha gene have focused primarily on interactions of liganded nuclear receptors with the ENaCalpha gene promoter. Herein, we demonstrate that the murine histone H3 lysine-79 methyltransferase, murine disruptor of telomeric silencing alternative splice variant "a" (mDot1a), is a novel component in the aldosterone signaling network controlling transcription of the ENaCalpha gene. Aldosterone downregulated mDot1a mRNA levels in murine inner medullary collecting ducts cells, which was associated with histone H3 K79 hypomethylation in bulk histones and at specific sites in the ENaCalpha 5'-flanking region, and trans-activation of ENaCalpha. Knockdown of mDot1a by RNA interference increased activity of a stably integrated ENaCalpha promoter-luciferase construct and expression of endogenous ENaCalpha mRNA. Conversely, overexpression of EGFP-tagged mDot1a resulted in hypermethylation of histone H3 K79 at the endogenous ENaCalpha promoter, repression of endogenous ENaCalpha mRNA expression, and decreased activity of the ENaCalpha promoter-luciferase construct. mDot1a-mediated histone H3 K79 hypermethylation and repression of ENaCalpha promoter activity was abolished by mDot1a mutations that eliminate its methyltransferase activity. Collectively, our data identify mDot1a as a novel aldosterone-regulated histone modification enzyme, and, through binding the ENaCalpha promoter and hypermethylating histone H3 K79 associated with the ENaCalpha promoter, a negative regulator of ENaCalpha transcription.

MeSH Terms
Aldosterone/pharmacology Animals Cell Line Down-Regulation/drug effects Epithelial Sodium Channels Histone Methyltransferases Histone-Lysine N-Methyltransferase/metabolism Kidney Tubules, Collecting/cytology Methylation Methyltransferases/metabolism Mice Promoter Regions, Genetic Protein Binding Protein Methyltransferases RNA, Messenger/metabolism Sodium Channels/genetics,metabolism Transcription, Genetic/drug effects
Chemicals
Epithelial Sodium Channels RNA, Messenger Sodium Channels Aldosterone Dot1l protein, mouse Histone Methyltransferases Methyltransferases Protein Methyltransferases Histone-Lysine N-Methyltransferase
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Zhang Wenzheng
Department of Internal Medicine, The University of Texas Medical School at Houston, 6431 Fannin, MSB 1.150, Houston, TX 77030, USA.
Xia Xuefeng
Jalal Diana I
Kuncewicz Teresa
Xu William
Lesage Gene D
Kone Bruce C
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Article Info
Journal
American journal of physiology. Cell physiology
Abbr.
Am J Physiol Cell Physiol
ISSN
0363-6143
Published
2006-03-00
Epub
2005-00-19
Pages
C936-46
Language
English
Region
United States
NLM ID
100901225
PMCID
PMC3009459
Subset
IM
Grants
NIDDK NIH HHS · R01 DK047981 · United States
NIDDK NIH HHS · K01 DK070834-01 · United States
NIDDK NIH HHS · R01 DK-47981 · United States
NIDDK NIH HHS · K01 DK070834 · United States
NIDDK NIH HHS · K01 DK-70834 · United States
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