Abstract
Histone RNA 3' end formation occurs through a specific cleavage reaction that requires, among other things, base-pairing interactions between a conserved spacer element in the pre-mRNA and the minor U7 snRNA present as U7 snRNP. An oligonucleotide complementary to the first 16 nucleotides of U7 RNA can be used to characterize U7 snRNPs from nuclear extracts by native gel electrophoresis. Using similar native gel techniques, we present direct biochemical evidence for a stable association between histone pre-mRNA and U7 snRNPs. Other complexes formed in the nuclear extract are dependent on the 5' cap structure and on the conserved hairpin element of histone pre-mRNA, respectively. However, in contrast to the U7-specific complex, their formation is not required for processing. Comparison of several authentic and mutant histone pre-mRNAs with different spacer sequences demonstrates that the formation and stability of the U7-specific complex closely follows the predicted stability of the potential RNA-RNA hybrid. However, this does not exclude a stabilization of the complex by U7 snRNP structural proteins.
MeSH Terms
Animals
Base Sequence
Binding Sites
Cell Line
Cell Nucleus/metabolism
Cloning, Molecular
Histones/genetics
Mice
Molecular Sequence Data
Nucleic Acid Conformation
Oligodeoxyribonucleotides/chemical synthesis,metabolism
Protein Binding
RNA Precursors/metabolism
RNA, Small Nuclear/metabolism
Restriction Mapping
Ribonucleoproteins/metabolism
Ribonucleoproteins, Small Nuclear
Saccharomyces cerevisiae/genetics
Templates, Genetic
Chemicals
Histones
Oligodeoxyribonucleotides
RNA Precursors
RNA, Small Nuclear
Ribonucleoproteins
Ribonucleoproteins, Small Nuclear
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Melin L
Abteilung für Entwicklungsbiologie, Universität Bern, Switzerland.
Soldati D
Mital R
Streit A
Schümperli D
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