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Transcriptomic comparison of Drosophila snRNP biogenesis mutants reveals mutant-specific changes in pre-mRNA processing: implications for spinal muscular atrophy.

RNA. 2016; 
GarciaEric L,WenYing,PraveenKavita,MateraA Gre
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Molecular Biology Reagents PCR templates were amplified from the following plasmids: Smn, pAFW-SMN; Prp6/CG6841, cDNA clone OFa18909 (GenScript); or Prp8, cDNA clone OFa09689 (GenScript). Get A Quote

摘要

Survival motor neuron (SMN) functions in the assembly of spliceosomal small nuclear ribonucleoproteins (snRNPs) that catalyze pre-mRNA splicing. Here, we used disruptions in Smn and two additional snRNP biogenesis genes, Phax and Ars2, to classify RNA processing differences as snRNP-dependent or gene-specific in Drosophila Phax and Smn mutants exhibited comparable reductions in snRNAs, and comparison of their transcriptomes uncovered shared sets of RNA processing changes. In contrast, Ars2 mutants displayed only small decreases in snRNA levels, and RNA processing changes in these mutants were generally distinct from those identified in Phax and Smn animals. Instead, RNA processing changes in Ars2 ... More

关键词

Abelson interacting protein,Ars2,GARS,PHAX,Prp6,Prp8,RNA-sequencing,SMA,SMN,alternative polyadenylation,alternative splicing,dUTPase,phosphorylated adaptor for RNA export,snRNA,snRNP biogenesis,spinal muscular atrophy,survival motor neuron,�