The beta‐globin locus control region enhances transcription of but does not confer position‐independent expression onto the lacZ gene in transgenic mice.
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Summary
The results show that the lacZ reporter affects the ability of the LCR to activate chromatin in mice and that culture cells are not an adequate model for position‐independent gene expression studies.
- Type
- article
- Published
- 1996-07-01
- Cited by
- 65
- References
- 3
- Access
- Open access
- OpenAlex
- https://openalex.org/W141696687
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19950455
Keywords
Biology, Locus control region, Gene, Transcription (linguistics), Transgene
References
Cited by
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- Frataxin overexpressing mice
- Human HMG box transcription factor HBP1: a role in hCD2 LCR function
- The tkNeo gene, but not the pgkPuro gene, can influence the ability of the beta-globin LCR to enhance and confer position-independent expression onto the beta-globin gene.
- Transcriptional regulation in endoderm development: characterization of an enhancer controlling Hnf3g expression by transgenesis and targeted mutagenesis
- Position effects in mice carrying a lacZ transgene in cis with the beta-globin LCR can be explained by a graded model.
- Developmental regulation of eukaryotic gene loci: which cis-regulatory information is required?
- Chromosomal sequences flanking an efficiently expressed transgene dramatically enhance its expression.
- Mosaic expression of LacZ reporter gene controlled by 5′-regulatory sequences of alpha-S1-Casein gene in transgenic mice
- Long-distance chromatin mechanisms controlling tissue-specific gene locus activation.
- A Targeted Disruption of the Murine Complement Factor B Gene Resulting in Loss of Expression of Three Genes in Close Proximity, Factor B, C2, and D17H6S45 *
- Expression of a Human β-Globin Transgene in Mice with the CACC Motif and Upstream Sequences Deleted from the Promoter Still Depends on Erythroid Krüppel-like Factor*
- Locus control region activity by 5′HS3 requires a functional interaction with β-globin gene regulatory elements: expression of novel β/γ-globin hybrid transgenes
- The design of a new mutation model for active genes: expression of the Escherichia coli lac operon in mammalian cells.
- Human germline genetic modification: scientific and bioethical perspectives.
- Bin1 Src Homology 3 Domain Acts as a Scaffold for Myofiber Sarcomere Assembly*
- Heme Oxygenase-1 Gene Enhancer Manifests Silencing Activity in a Chromatin Environment Prior to Oxidative Stress
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