U7 snRNA mutations in Drosophila block histone pre-mRNA processing and disrupt oogenesis
Open Access
- 21 February 2006
- journal article
- Published by Cold Spring Harbor Laboratory in RNA
- Vol. 12 (3) , 396-409
- https://doi.org/10.1261/rna.2270406
Abstract
Metazoan replication-dependent histone mRNAs are not polyadenylated, and instead terminate in a conserved stem–loop structure generated by an endonucleolytic cleavage involving the U7 snRNP, which interacts with histone pre-mRNAs through base-pairing between U7 snRNA and a purine-rich sequence in the pre-mRNA located downstream of the cleavage site. Here we generate null mutations of the single Drosophila U7 gene and demonstrate that U7 snRNA is required in vivo for processing all replication-associated histone pre-mRNAs. Mutation of U7 results in the production of poly A+ histone mRNA in both proliferating and endocycling cells because of read-through to cryptic polyadenylation sites found downstream of each Drosophila histone gene. A similar molecular phenotype also results from mutation of Slbp, which encodes the protein that binds the histone mRNA 3′ stem–loop. U7 null mutants develop into sterile males and females, and these females display defects during oogenesis similar to germ line clones of Slbp null cells. In contrast to U7 mutants, Slbp null mutations cause lethality. This may reflect a later onset of the histone pre-mRNA processing defect in U7 mutants compared to Slbp mutants, due to maternal stores of U7 snRNA. A double mutant combination of a viable, hypomorphic Slbp allele and a viable U7 null allele is lethal, and these double mutants express polyadenylated histone mRNAs earlier in development than either single mutant. These data suggest that SLBP and U7 snRNP cooperate in the production of histone mRNA in vivo, and that disruption of histone pre-mRNA processing is detrimental to development.Keywords
This publication has 60 references indexed in Scilit:
- Symplekin and multiple other polyadenylation factors participate in 3′-end maturation of histone mRNAsGenes & Development, 2005
- Regulated degradation of replication-dependent histone mRNAs requires both ATR and Upf1Nature Structural & Molecular Biology, 2005
- New insights into cell cycle control from the Drosophila endocycleOncogene, 2005
- stringcdc25 and cyclin E are required for patterned histone expression at different stages of Drosophila embryonic developmentDevelopmental Biology, 2004
- The centennial of the Cajal bodyNature Reviews Molecular Cell Biology, 2003
- Drosophila BLM in Double-Strand Break Repair by Synthesis-Dependent Strand AnnealingScience, 2003
- The Stem-Loop Binding Protein Is Required for Efficient Translation of Histone mRNA In Vivo and In VitroMolecular and Cellular Biology, 2002
- Developmental Control of Histone mRNA and dSLBP Synthesis duringDrosophilaEmbryogenesis and the Role of dSLBP in Histone mRNA 3′ End Processing In VivoMolecular and Cellular Biology, 2002
- Formation of the 3′ end of histone mRNAGene, 1999
- Identification of the Human U7 snRNP as One of Several Factors Involved in the 3′ End Maturation of Histone Premessenger RNA'sScience, 1987