Literature DB >> 23152297

An Af9 cis-element directly targets Dot1a to mediate transcriptional repression of the αENaC gene.

Wenzheng Zhang1, Zhiyuan Yu, Hongyu Wu, Lihe Chen, Qun Kong, Bruce C Kone.   

Abstract

The epithelial Na(+) channel subunit-α (αENaC) of the distal nephron is essential for salt balance. We previously demonstrated that the histone methyltransferase Dot1a and its protein partner Af9 basally repress αENaC transcription in mouse inner medullary collecting duct type 3 (mIMCD3) cells and link aldosterone-elicited chromatin modifications to αENaC transcriptional activation. Af9 DNA-binding activity has never been demonstrated, and whether and where Af9 binds to the αENaC promoter to target Dot1a are unknown. The present study sought to identify functional Af9 cis-element(s) in the -57/+439 "R3" subregion of αENaC, the principal site for Dot1a-Af9 interaction, in mIMCD3 cells. We also exploited connecting tubule/collecting duct-specific Dot1l-deficient mice (Dot1l(AC)) to determine the impact of Dot1l inactivation on renal αENaC expression in vivo. mIMCD3 cell lines expressing αENaC promoter-reporter constructs harboring deletion of +74/+107 demonstrated greatly reduced association of Af9 and Dot1a by ChIP/qPCR. Aldosterone treatment resulted in further decrements in Af9 and Dot1a association with the αENaC promoter. Gel shift and antibody competition assays using wild-type and mutant oligomers revealed Af9-containing +78/+92 αENaC DNA-protein complexes in nuclear extracts of mIMCD3 cells. Mutation of the +78/+92 element resulted in higher basal αENaC promoter activity and impaired Dot1a-mediated inhibition in trans-repression assays. In agreement, mice with connecting tubule/collecting duct-specific knockout of Dot1l exhibited greater αENaC mRNA levels in kidney compared with control. Thus, we conclude that +78/+92 of αENaC represents the primary Af9 binding site involved in recruiting Dot1a to repress basal and aldosterone-sensitive αENaC transcription and that Dot1l inactivation promotes αENaC mRNA expression by eliminating Dot1a-mediated repression.

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Year:  2012        PMID: 23152297      PMCID: PMC3566494          DOI: 10.1152/ajprenal.00537.2011

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  27 in total

1.  The polycomb protein MPc3 interacts with AF9, an MLL fusion partner in t(9;11)(p22;q23) acute leukemias.

Authors:  C S Hemenway; A C de Erkenez; G C Gould
Journal:  Oncogene       Date:  2001-06-28       Impact factor: 9.867

2.  Structure of the catalytic domain of human DOT1L, a non-SET domain nucleosomal histone methyltransferase.

Authors:  Jinrong Min; Qin Feng; Zhizhong Li; Yi Zhang; Rui-Ming Xu
Journal:  Cell       Date:  2003-03-07       Impact factor: 41.582

3.  Analysis of the mouse Scnn1a promoter in cortical collecting duct cells and in transgenic mice.

Authors:  S Kohler; S Pradervand; C Verdumo; A M Mérillat; M Bens; A Vandewalle; F Beermann; E Hummler
Journal:  Biochim Biophys Acta       Date:  2001-05-28

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

Authors:  Wenzheng Zhang; Xuefeng Xia; Diana I Jalal; Teresa Kuncewicz; William Xu; Gene D Lesage; Bruce C Kone
Journal:  Am J Physiol Cell Physiol       Date:  2005-10-19       Impact factor: 4.249

5.  Mouse Af9 is a controller of embryo patterning, like Mll, whose human homologue fuses with Af9 after chromosomal translocation in leukemia.

Authors:  Emma C Collins; Alexandre Appert; Linda Ariza-McNaughton; Richard Pannell; Yoshihiro Yamada; Terence H Rabbitts
Journal:  Mol Cell Biol       Date:  2002-10       Impact factor: 4.272

6.  The mixed lineage leukemia fusion partner AF9 binds specific isoforms of the BCL-6 corepressor.

Authors:  R Sathish Srinivasan; Andrea C de Erkenez; Charles S Hemenway
Journal:  Oncogene       Date:  2003-05-29       Impact factor: 9.867

7.  An Mll-AF9 fusion gene made by homologous recombination causes acute leukemia in chimeric mice: a method to create fusion oncogenes.

Authors:  J Corral; I Lavenir; H Impey; A J Warren; A Forster; T A Larson; S Bell; A N McKenzie; G King; T H Rabbitts
Journal:  Cell       Date:  1996-06-14       Impact factor: 41.582

8.  MLLT3 gene on 9p22 involved in t(9;11) leukemia encodes a serine/proline rich protein homologous to MLLT1 on 19p13.

Authors:  S Iida; M Seto; K Yamamoto; H Komatsu; A Tojo; S Asano; N Kamada; Y Ariyoshi; T Takahashi; R Ueda
Journal:  Oncogene       Date:  1993-11       Impact factor: 9.867

9.  Loss-of-function mutation of the AF9/MLLT3 gene in a girl with neuromotor development delay, cerebellar ataxia, and epilepsy.

Authors:  Tiziano Pramparo; Salvatore Grosso; Jole Messa; Adriana Zatterale; Maria Clara Bonaglia; Luciana Chessa; Paolo Balestri; Mariano Rocchi; Orsetta Zuffardi; Roberto Giorda
Journal:  Hum Genet       Date:  2005-10-28       Impact factor: 4.132

10.  Effects of genetic variation in H3K79 methylation regulatory genes on clinical blood pressure and blood pressure response to hydrochlorothiazide.

Authors:  Julio D Duarte; Issam Zineh; Ben Burkley; Yan Gong; Taimour Y Langaee; Stephen T Turner; Arlene B Chapman; Eric Boerwinkle; John G Gums; Rhonda M Cooper-Dehoff; Amber L Beitelshees; Kent R Bailey; Roger B Fillingim; Bruce C Kone; Julie A Johnson
Journal:  J Transl Med       Date:  2012-03-22       Impact factor: 5.531

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  12 in total

1.  Mineralocorticoid receptor antagonizes Dot1a-Af9 complex to increase αENaC transcription.

Authors:  Xi Zhang; Qiaoling Zhou; Lihe Chen; Stefan Berger; Hongyu Wu; Zhou Xiao; David Pearce; Xiaodong Zhou; Wenzheng Zhang
Journal:  Am J Physiol Renal Physiol       Date:  2013-09-11

2.  Aldosterone-dependent trans-activation and epigenetic derepression of ENaC: where is the balance?

Authors:  Alexander Staruschenko
Journal:  Am J Physiol Renal Physiol       Date:  2013-07-10

Review 3.  Epigenetics and the control of the collecting duct epithelial sodium channel.

Authors:  Bruce C Kone
Journal:  Semin Nephrol       Date:  2013-07       Impact factor: 5.299

4.  Sp1 trans-activates and is required for maximal aldosterone induction of the αENaC gene in collecting duct cells.

Authors:  Zhiyuan Yu; Qun Kong; Bruce C Kone
Journal:  Am J Physiol Renal Physiol       Date:  2013-06-26

Review 5.  Regulation of αENaC transcription.

Authors:  Lihe Chen; Xi Zhang; Wenzheng Zhang
Journal:  Vitam Horm       Date:  2015-02-14       Impact factor: 3.421

6.  Loss of Histone H3 K79 Methyltransferase Dot1l Facilitates Kidney Fibrosis by Upregulating Endothelin 1 through Histone Deacetylase 2.

Authors:  Long Zhang; Lihe Chen; Chao Gao; Enuo Chen; Andrea R Lightle; Llewellyn Foulke; Bihong Zhao; Paul J Higgins; Wenzheng Zhang
Journal:  J Am Soc Nephrol       Date:  2019-12-16       Impact factor: 10.121

Review 7.  Epigenetics of epithelial Na(+) channel-dependent sodium uptake and blood pressure regulation.

Authors:  Wenzheng Zhang
Journal:  World J Nephrol       Date:  2015-07-06

8.  Dot1l deficiency leads to increased intercalated cells and upregulation of V-ATPase B1 in mice.

Authors:  Zhou Xiao; Lihe Chen; Qiaoling Zhou; Wenzheng Zhang
Journal:  Exp Cell Res       Date:  2015-09-25       Impact factor: 3.905

9.  Aldosterone reprograms promoter methylation to regulate αENaC transcription in the collecting duct.

Authors:  Zhiyuan Yu; Qun Kong; Bruce C Kone
Journal:  Am J Physiol Renal Physiol       Date:  2013-08-07

Review 10.  Recent developments in epigenetics of acute and chronic kidney diseases.

Authors:  Marpadga A Reddy; Rama Natarajan
Journal:  Kidney Int       Date:  2015-05-20       Impact factor: 10.612

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