Genome architecture of the human β-globin locus affects developmental regulation of gene expression

被引:16
作者
Harju, S
Navas, PA
Stamatoyannopoulos, G
Peterson, KR
机构
[1] Univ Kansas, Med Ctr, Dept Biochem & Mol Biol, Kansas City, KS 66160 USA
[2] Univ Kansas, Med Ctr, Dept Anat & Cell Biol, Kansas City, KS 66160 USA
[3] Univ Washington, Div Med Genet, Seattle, WA 98195 USA
关键词
D O I
10.1128/MCB.25.20.8765-8778.2005
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
To test the role of gene order in globin gene expression, mutant human P-globin locus yeast artificial chromosome constructs were used, each having one additional globin gene encoding a "marked" transcript (epsilon(m), gamma(m), or beta(m)) integrated at different locations within the locus. When a beta(m)-globin gene was placed between the locus control region (LCR) and the E-globin gene, beta(m)-globin expression dominated primitive and definitive erythropoiesis; only beta(m)-globin mRNA was detected during the fetal and adult definitive stages of erythropoiesis. When an (A)gamma(m)-globin gene was placed at the same location, (A)gamma(m)-globin was expressed during embryonic erythropoiesis and the fetal liver stage of definitive erythropoiesis but was silenced during the adult stage. The downstream wild-type gamma-globin genes were not expressed. When an epsilon(m)-globin gene was placed between the delta- and beta-globin genes, it remained silent during embryonic erythropoiesis; only the LCR-proximal wild-type e-globin gene was expressed. Placement of a beta(m)-globin gene upstream of the (G)gamma-globin gene resulted in expression of beta(m)-globin in embryonic cells and in a significant decrease in expression of the downstream wild-type beta-globin gene. These results indicate that distance from the LCR, an inherent property of spatial gene order, is a major determinant of temporal gene expression during development.
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页码:8765 / 8778
页数:14
相关论文
共 45 条
[1]  
Ausubel FM, 1992, CURRENT PROTOCOLS MO
[2]   THE PRIMARY STRUCTURE OF THE HUMAN EPSILON-GLOBIN GENE [J].
BARALLE, FE ;
SHOULDERS, CC ;
PROUDFOOT, NJ .
CELL, 1980, 21 (03) :621-626
[3]   HUMAN GAMMA-GLOBIN TO BETA-GLOBIN GENE SWITCHING IN TRANSGENIC MICE [J].
BEHRINGER, RR ;
RYAN, TM ;
PALMITER, RD ;
BRINSTER, RL ;
TOWNES, TM .
GENES & DEVELOPMENT, 1990, 4 (03) :380-389
[4]   Conservation of sequence and structure flanking the mouse and human β-globin loci:: The β-globin genes are embedded within an array of odorant receptor genes [J].
Bulger, M ;
von Doorninck, JH ;
Saitoh, N ;
Telling, A ;
Farrell, C ;
Bender, MA ;
Felsenfeld, G ;
Axel, R ;
Groudine, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (09) :5129-5134
[5]  
Cheng Q, 2000, EUR J NEUROL, V7, P11, DOI 10.1046/j.1468-1331.2000.00006.x
[6]   DEVELOPMENTAL REGULATION OF BETA-GLOBIN GENE SWITCHING [J].
CHOI, ORB ;
ENGEL, JD .
CELL, 1988, 55 (01) :17-26
[7]  
CHOMCZYNSKI P, 1987, ANAL BIOCHEM, V162, P156, DOI 10.1016/0003-2697(87)90021-2
[8]   Spatial organization of gene expression: the active chromatin hub [J].
de Laat, W ;
Grosveld, F .
CHROMOSOME RESEARCH, 2003, 11 (05) :447-459
[9]   HUMAN GAMMA-GLOBIN GENES SILENCED INDEPENDENTLY OF OTHER GENES IN THE BETA-GLOBIN LOCUS [J].
DILLON, N ;
GROSVELD, F .
NATURE, 1991, 350 (6315) :252-254
[10]   The effect of distance on long-range chromatin interactions [J].
Dillon, N ;
Trimborn, T ;
Strouboulis, J ;
Fraser, P ;
Grosveld, F .
MOLECULAR CELL, 1997, 1 (01) :131-139