The MES-1 murine enhancer element is closely associated with the heterogeneous 5' ends of two divergent transcription units.
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Identification of a novel sequence element in the common promoter region of human collagen type IV genes, involved in the regulation of divergent transcriptionA functional YY1 binding site is necessary and sufficient to activate Surf-1 promoter activity in response to serum growth factorsExpression and functional analysis of SURF1 in Leigh syndrome patients with cytochrome c oxidase deficiencyRibosomal protein L7a is encoded by a gene (Surf-3) within the tightly clustered mouse surfeit locusThe isolation of transcription factors from lambda gt11 cDNA expression libraries: human steroid 5 alpha-reductase 1 has sequence-specific DNA binding activity.Systematic analysis of head-to-head gene organization: evolutionary conservation and potential biological relevance.Interpretation of multiple probe sets mapping to the same gene in Affymetrix GeneChipsThe mouse surfeit locus contains a very tight cluster of four "housekeeping" genes that is conserved through evolutionGenetic variability of the activity of bidirectional promoters: a pilot study in bovine muscle.Coincident start sites for divergent transcripts at a randomly selected CpG-rich island of mouse.The surf-4 gene encodes a novel 30 kDa integral membrane protein.The mouse surfeit locus contains a cluster of six genes associated with four CpG-rich islands in 32 kilobases of genomic DNA.Transcription initiation from the dihydrofolate reductase promoter is positioned by HIP1 binding at the initiation siteDual bidirectional promoters at the mouse dhfr locus: cloning and characterization of two mRNA classes of the divergently transcribed Rep-1 gene.The chicken skeletal alpha-actin gene promoter region exhibits partial dyad symmetry and a capacity to drive bidirectional transcription.Evidence that USF can interact with only a single general transcription complex at one time.Conservation of the organization of five tightly clustered genes over 600 million years of divergent evolution.The bidirectional promoter of the divergently transcribed mouse Surf-1 and Surf-2 genes.CpG methylation has differential effects on the binding of YY1 and ETS proteins to the bi-directional promoter of the Surf-1 and Surf-2 genes.Regulatory elements involved in the bidirectional activity of an immunoglobulin promoterThe housekeeping promoter from the mouse CpG island HTF9 contains multiple protein-binding elements that are functionally redundant.The mouse rpL7a gene is typical of other ribosomal protein genes in it's 5' region but differs in being located in a tight cluster of CpG-rich islands.One of the tightly clustered genes of the mouse surfeit locus is a highly expressed member of a multigene family whose other members are predominantly processed pseudogenes.Conserved cis-elements bind a protein complex that regulates Drosophila ras2/rop bidirectional expression.Conserved alternative splicing in the 5'-untranslated region of the muscle-specific enolase gene. Primary structure of mRNAs, expression and influence of secondary structure on the translation efficiency.The organization and expression of the Saccharomyces cerevisiae L4 ribosomal protein genes and their identification as the homologues of the mammalian ribosomal protein gene L7a.Structure of the Human Type IV Collagen Genes
P2860
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P2860
The MES-1 murine enhancer element is closely associated with the heterogeneous 5' ends of two divergent transcription units.
description
1986 nî lūn-bûn
@nan
1986年の論文
@ja
1986年論文
@yue
1986年論文
@zh-hant
1986年論文
@zh-hk
1986年論文
@zh-mo
1986年論文
@zh-tw
1986年论文
@wuu
1986年论文
@zh
1986年论文
@zh-cn
name
The MES-1 murine enhancer elem ...... divergent transcription units.
@en
type
label
The MES-1 murine enhancer elem ...... divergent transcription units.
@en
prefLabel
The MES-1 murine enhancer elem ...... divergent transcription units.
@en
P2860
P356
P1476
The MES-1 murine enhancer elem ...... divergent transcription units.
@en
P2093
P2860
P304
P356
10.1128/MCB.6.12.4558
P407
P577
1986-12-01T00:00:00Z