Abstract
Several lines of evidence suggest that erythroid-specific DNase I hypersensitive sites (HS) located far upstream of the human beta-globin gene are important in regulating beta-globin gene expression. We used the polymerase chain reaction technique to amplify and clone an 882-base-pair DNA fragment spanning one of these HS, designated HSII, which is located 54 kilobases upstream of the beta-globin gene. The cloned HSII fragment was linked to a human beta-globin gene in either the genomic (HSII-beta) or antigenomic (HSII-beta) orientation. These two constructs and a beta-globin gene alone (beta) were injected into fertilized mouse eggs, and expression was analyzed in liver and brain from day-16 transgenic fetuses. Five of 7 beta-transgenic fetuses expressed human beta-globin mRNA, but the level of expression per gene copy was low, ranging from 0.93 to 22.4% of mouse alpha-globin mRNA (average 9.9%). In contrast, 11 of 12 HSII-beta transgenic fetuses expressed beta-globin mRNA at levels per gene copy ranging from 31.3 to 336.6% of mouse alpha-globin mRNA (average 139.5%). Only three fetuses containing intact copies of the HSII-beta construct were produced. Two of three expressed human beta-globin mRNA at levels per gene copy of 179.2 and 387.1%. Expression of human beta-globin mRNA was tissue-specific in all three types of transgenic fetuses. These studies demonstrate that a small DNA fragment containing a single erythroid-specific HS can stimulate high-level human beta-globin gene expression in transgenic mice.
MeSH Terms
Animals
Base Sequence
Blotting, Southern
Deoxyribonuclease I
Female
Gene Amplification
Genes
Globins/genetics
Humans
Mice
Mice, Transgenic
Molecular Sequence Data
RNA, Messenger/genetics
Restriction Mapping
Transcription, Genetic
Chemicals
RNA, Messenger
Globins
Deoxyribonuclease I
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Curtin P T
Department of Medicine and Laboratory Medicine, University of California, San Francisco 94143-0724.
Liu D P
Liu W
Chang J C
Kan Y W
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