Evidence for a Bigenic Chromatin Subdomain in Regulation of the Fetal-to-Adult Hemoglobin Switch

被引:5
作者
Beauchemin, Hugues [1 ]
Trudel, Marie [1 ]
机构
[1] Univ Montreal, Inst Rech Clin Montreal, Mol Genet & Dev, Fac Med, Montreal, PQ H2W 1R7, Canada
关键词
BETA-GLOBIN GENE; LOCUS-CONTROL REGION; HUMAN GAMMA-GLOBIN; PORPHOBILINOGEN DEAMINASE GENE; SICKLE-CELL-DISEASE; DISTAL CCAAT BOX; TRANSGENIC MICE; DEVELOPMENTAL SPECIFICITY; INTERGENIC TRANSCRIPTION; CHROMOSOME CONFORMATION;
D O I
10.1128/MCB.01735-08
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
During development, human beta-globin locus regulation undergoes two critical switches, the embryonic-to-fetal and fetal-to-adult hemoglobin switches. To define the role of the fetal (A)gamma-globin promoter in switching, human beta-globin-YAC transgenic mice were produced with the (A)gamma-globin promoter replaced by the erythroid porphobilinogen deaminase (PBGD) promoter (PBGD(A)gamma-YAC). Activation of the stage-independent PBGD(A)gamma-globin strikingly stimulated native (G)gamma-globin expression at the fetal and adult stages, identifying a fetal gene pair or bigenic cooperative mechanism. This impaired fetal silencing severely suppressed both delta- and (G)gamma-globin expression in PBGD(A)gamma-YAC mice from fetal to neonatal stages and altered kinetics and delayed switching of adult beta-globin. This regulation evokes the two human globin switching patterns in the mouse. Both patterns of DNA demethylation and chromatin immunoprecipitation analysis correlated with gene activation and open chromatin. Locus control region (LCR) interactions detected by chromosome conformation capture revealed distinct spatial fetal and adult LCR bigenic subdomains. Since both intact fetal promoters are critical regulators of fetal silencing at the adult stage, we concluded that fetal genes are controlled as a bigenic subdomain rather than a gene-autonomous mechanism. Our study also provides evidence for LCR complex interaction with spatial fetal or adult bigenic functional subdomains as a niche for transcriptional activation and hemoglobin switching.
引用
收藏
页码:1635 / 1648
页数:14
相关论文
共 65 条
[1]   REGULATED EXPRESSION OF THE HUMAN BETA-GLOBIN GENE IN TRANSGENIC MICE REQUIRES AN UPSTREAM GLOBIN OR NONGLOBIN PROMOTER [J].
ANDERSON, KP ;
LLOYD, JA ;
PONCE, E ;
CRABLE, SC ;
NEUMANN, JC ;
LINGREL, JB .
MOLECULAR BIOLOGY OF THE CELL, 1993, 4 (10) :1077-1085
[2]   Developmentally distinct effects on human ε-, γ- and δ-globin levels caused by the absence or altered position of the human β-globin gene in YAC transgenic mice [J].
Bauchwitz, R ;
Costantini, F .
HUMAN MOLECULAR GENETICS, 2000, 9 (04) :561-574
[3]   Differential regulatory and compensatory responses in hematopoiesis/erythropoiesis in α- and β-globin hemizygous mice [J].
Beauchemin, H ;
Blouin, MJ ;
Trudel, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (19) :19471-19480
[4]   β-globin gene switching and DNase I sensitivity of the endogenous β-globin locus in mice do not require the locus control region [J].
Bender, MA ;
Bulger, M ;
Close, J ;
Groudine, M .
MOLECULAR CELL, 2000, 5 (02) :387-393
[5]  
Blouin M.J., 1997, BLOOD, V90, P22
[6]   Genetic correction of sickle cell disease: Insights using transgenic mouse models [J].
Blouin, MJ ;
Beauchemin, H ;
Wright, A ;
De Paepe, M ;
Sorette, M ;
Bleau, AM ;
Nakamoto, B ;
Ou, CN ;
Stamatoyannopoulos, G ;
Trudel, M .
NATURE MEDICINE, 2000, 6 (02) :177-182
[7]   Developmental stage-specific epigenetic control of human β-globin gene expression is potentiated in hematopoietic progenitor cells prior to their transcriptional activation [J].
Bottardi, S ;
Aumont, A ;
Grosveld, F ;
Milot, E .
BLOOD, 2003, 102 (12) :3989-3997
[8]   DUAL PROMOTER ACTIVATION BY THE HUMAN BETA-GLOBIN LOCUS-CONTROL REGION [J].
BRESNICK, EH ;
FELSENFELD, G .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (04) :1314-1317
[9]   Synergistic regulation of human beta-globin gene switching by locus control region elements HS3 and HS4 [J].
Bungert, J ;
Dave, U ;
Lim, KC ;
Lieuw, KH ;
Shavit, JA ;
Liu, QH ;
Engel, JD .
GENES & DEVELOPMENT, 1995, 9 (24) :3083-3096
[10]  
Bungert J, 1999, MOL CELL BIOL, V19, P3062