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The mechanism of transcription termination by RNA poiymerase I

Data up to Jan 2025

Published1994
Citations40
References32

Total Citations Per Year

Abstract

References (32)

Transcriptional regulation

1991 • 893 citations

Recombination-stimulating sequences in yeast ribosomal DNA correspond to sequences regulating transcription by RNA polymerase I

1987 • 317 citations

Termination of transcription in human mitochondria: Identification and purification of a DNA binding protein factor that promotes termination

1989 • 289 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

Purified RNA polymerase III accurately and efficiently terminates transcription of 5s RNA genes

1983 • 179 citations

A transcription terminator located upstream of the mouse rDNA initiation site affects rRNA synthesis

1986 • 157 citations

Characterization of three sites of RNA 3$prime; end formation in the Xenopus ribosomal gene spacer

1986 • 155 citations

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

1986 • 153 citations

A repeated 18 bp sequence motif in the mouse rDNA spacer mediates binding of a nuclear factor and transcription termination

1986 • 143 citations

REB1, a yeast DNA-binding protein with many targets, is essential for growth and bears some resemblance to the oncogene myb.

1990 • 134 citations

Transcription by RNA polymerase I stimulates mitotic recombination in Saccharomyces cerevisiae.

1989 • 125 citations

Promoter occlusion during ribosomal RNA transcription

1988 • 123 citations

The REB1 site is an essential component of a terminator for RNA polymerase I in Saccharomyces cerevisiae.

1993 • 109 citations

Specific interaction of the murine transcription termination factor TTF I with class-I RNA polymerases

1990 • 104 citations

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

1989 • 86 citations

RNA Polymerase Marching Backward

1993 • 74 citations

3'-end formation of mouse pre-rRNA involves both transcription termination and a specific processing reaction.

1989 • 70 citations

RNA polymerase II transcription termination is mediated specifically by protein binding to a CCAAT box sequence.

1989 • 70 citations

An RNA polymerase I termination site can stimulate the adjacent ribosomal gene promoter by two distinct mechanisms in Xenopus laevis.

1990 • 61 citations

The mouse ribosomal gene terminator consists of three functionally separable sequence elements.

1988 • 55 citations

Termination of transcription by yeast RNA polymerase I

1989 • 54 citations

A bipartite DNA-binding domain in yeast Reb1p.

1993 • 52 citations

Limited proteolysis unmasks specific DNA-binding of the murine RNA polymerase I-specific transcription termination factor TTFI

1992 • 45 citations

A DNA-binding protein is required for termination of transcription by RNA polymerase I in Xenopus laevis.

1990 • 44 citations

An undecamer DNA sequence directs termination of human ribosomal gene transcription

1990 • 42 citations

A 12-base-pair sequence is an essential element of the ribosomal gene terminator in Xenopus laevis.

1987 • 38 citations

Sequences within the spacer region of yeast rRNA cistrons that stimulate 35S rRNA synthesis in vivo mediate RNA polymerase I-dependent promoter and terminator activities.

1989 • 36 citations

Evolutionary changes of sequences and factors that direct transcription termination of human and mouse ribsomal genes.

1987 • 35 citations

A point mutation uncouples RNA 3'-end formation and termination during ribosomal gene transcription in Xenopus laevis.

1990 • 30 citations

Heat shock stabilizes highly unstable transcripts of the Xenopus ribosomal gene spacer.

1987 • 23 citations

In Vitro RNA Processing Generates Mature 3′ Termini of Yeast 35 and 25 S Ribosomal RNAs

1989 • 21 citations

Functional difference between the sites of ribosomal 40S precursor 3′ end formation inXenopus laevisandXenopus borealis

1990 • 10 citations

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