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The Mouse Ribosomal DNA Promoter Has More Stringent Requirements In Vivo than In Vitro

Data up to Jan 2025

Published1990
Citations9
References29

Total Citations Per Year

Abstract

References (29)

Isolation of biologically active ribonucleic acid from sources enriched in ribonuclease

1979 • 22,482 citations

High level transient expression of a chloramphenicol acetyl transferase gene by DEAE-dextran mediated DNA transfection coupled with a dimethyl sulfoxide or glycerol shock treatment

1984 • 898 citations

Analysis of transcriptional regulatory signals of the HSV thymidine kinase gene: Identification of an upstream control region

1981 • 646 citations

TRANSCRIPTION OF CLONED EUKARYOTIC RIBOSOMAL RNA GENES

1986 • 333 citations

Transcription of mouse rRNA genes by RNA polymerase I: In vitro and in vivo initiation and processing sites

1981 • 260 citations

Transcription of mouse rDNA terminates downstream of the 3′ end of 28S RNA and involves interaction of factors with repeated sequences in the 3′ spacer

1985 • 189 citations

A termination site for Xenopus RNA polymerase I also acts as an element of an adjacent promoter

1986 • 153 citations

Nucleotide sequence requirements for specific initiation of transcription by RNA polymerase I.

1982 • 140 citations

Human ribosomal RNA gene: nucleotide sequence of the transcription initiation region and comparison of three mammalian genes.

1982 • 139 citations

A transcriptional terminator is a novel element of the promoter of the mouse ribosomal RNA gene

1986 • 136 citations

Regulation of human ribosomal RNA transcription.

1983 • 117 citations

Transcription of mouse rDNA is regulated by an activated subform of RNA polymerase I

1987 • 115 citations

A purified transcription factor (TIF-IB) binds to essential sequences of the mouse rDNA promoter.

1986 • 108 citations

Nested control regions promote Xenopus ribosomal RNA synthesis by RNA polymerase I

1983 • 99 citations

Determination of the promoter region of mouse ribosomal RNA gene by an in vitro transcription system.

1984 • 94 citations

The promoter-proximal rDNA terminator augments initiation by preventing disruption of the stable transcription complex caused by polymerase read-in.

1989 • 86 citations

Linker scanning of the yeast RNA polymerase I promoter

1989 • 78 citations

Eukaryotic RNA polymerase I promoter binding is directed by protein contacts with transcription initiation factor and is DNA sequence-independent

1987 • 74 citations

Transcription of Xenopus ribosomal RNA genes by RNA polymerase I in vitro.

1982 • 69 citations

Analysis of clustered point mutations in the human ribosomal RNA gene promoter by transient expression in vivo.

1988 • 67 citations

Ribosomal RNA transcription: proteins and DNA sequences involved in preinitiation complex formation.

1985 • 67 citations

Localization of DNA sequences promoting RNA polymerase I activity in Drosophila.

1983 • 64 citations

Half helical turn spacing changes convert a frog into a mouse rDNA promoter: a distant upstream domain determines the helix face of the initiation site.

1990 • 60 citations

Efficient transcription of a protein-coding gene from the RNA polymerase I promoter in transfected cells.

1985 • 58 citations

A component of Drosophila RNA polymerase I promoter lies within the rRNA transcription unit

1983 • 52 citations

The ribosomal RNA promoter ofAcanthamoeba castellaniidetermined by transcription in a cellfree system

1985 • 48 citations

The core promoter of mouse rDNA consists of two functionally distinct domains

1986 • 47 citations

Linker scanner mutagenesis of theXenopus laevisribosomal gene promoter

1987 • 43 citations

Mouse and frog violate the paradigm of species-specific transcription of ribosomal RNA genes.

1987 • 37 citations

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The Mouse Ribosomal DNA Promoter Has More Stringent Requirements In Vivo than In Vitro (1990) – Molecular and Cellular Biology | Metascience Observatory Explorer