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Dissection of Drosophila melanogaster Flight Muscles for Omics Approaches
Published on: October 17, 2019
Drosophila muscleblind is involved in troponin T alternative splicing and apoptosis
Marta Vicente-Crespo1, Maya Pascual, Juan M Fernandez-Costa
1Department of Genetics, University of Valencia, Valencia, Spain.
Background:
Muscleblind-like proteins (MBNL) have been involved in a developmental switch in the use of defined cassette exons. Such transition fails in the CTG repeat expansion disease myotonic dystrophy due, in part, to sequestration of MBNL proteins by CUG repeat RNA. Four protein isoforms (MblA-D) are coded by the unique Drosophila muscleblind gene.
Methodology/Principal Findings:
We used evolutionary, genetic and cell culture approaches to study muscleblind (mbl) function in flies. The evolutionary study showed that the MblC protein isoform was readily conserved from nematods to Drosophila, which suggests that it performs the most ancestral muscleblind functions. Overexpression of MblC in the fly eye precursors led to an externally rough eye morphology. This phenotype was used in a genetic screen to identify five dominant suppressors and 13 dominant enhancers including Drosophila CUG-BP1 homolog aret, exon junction complex components tsunagi and Aly, and pro-apoptotic genes Traf1 and reaper. We further investigated Muscleblind implication in apoptosis and splicing regulation. We found missplicing of troponin T in muscleblind mutant pupae and confirmed Muscleblind ability to regulate mouse fast skeletal muscle Troponin T (TnnT3) minigene splicing in human HEK cells. MblC overexpression in the wing imaginal disc activated apoptosis in a spatially restricted manner. Bioinformatics analysis identified a conserved FKRP motif, weakly resembling a sumoylation target site, in the MblC-specific sequence. Site-directed mutagenesis of the motif revealed no change in activity of mutant MblC on TnnT3 minigene splicing or aberrant binding to CUG repeat RNA, but altered the ability of the protein to form perinuclear aggregates and enhanced cell death-inducing activity of MblC overexpression.
Conclusions/Significance:
Taken together our genetic approach identify cellular processes influenced by Muscleblind function, whereas in vivo and cell culture experiments define Drosophila troponin T as a new Muscleblind target, reveal a potential involvement of MblC in programmed cell death and recognize the FKRP motif as a putative regulator of MblC function and/or subcellular location in the cell.
Insights
Muscleblind-like proteins (MBNL) regulate gene splicing and apoptosis. This study identifies Drosophila troponin T as a new MBNL target and reveals the FKRP motif
Area of Science:
- * Molecular Biology
- * Developmental Biology
- * Genetics
Background:
- * Muscleblind-like proteins (MBNL) are crucial for regulating alternative splicing during development.
- * Myotonic dystrophy involves MBNL sequestration by CUG repeat RNA, disrupting normal splicing.
- * The Drosophila melanogaster muscleblind gene encodes four MBNL isoforms (MblA-D).
Purpose of the Study:
- * To investigate the function of muscleblind (mbl) in Drosophila using evolutionary, genetic, and cell culture methods.
- * To identify MBNL targets and regulatory mechanisms, particularly concerning splicing and apoptosis.
- * To explore the role of the conserved FKRP motif in MblC function.
Main Methods:
- * Evolutionary conservation analysis of Mbl isoforms.
- * Genetic screening in Drosophila for suppressors and enhancers of MblC overexpression.
- * In vivo and cell culture experiments to assess splicing regulation and apoptosis.
- * Bioinformatics analysis and site-directed mutagenesis of the FKRP motif.
Main Results:
- * MblC isoform is highly conserved, suggesting ancestral function.
- * Overexpression of MblC caused rough eye morphology, leading to the identification of genetic interactors.
- * Muscleblind regulates Drosophila troponin T splicing and MblC overexpression induces apoptosis.
- * The FKRP motif influences MblC aggregation and cell death activity but not splicing or RNA binding.
Conclusions:
- * Drosophila genetic screen identifies cellular processes regulated by Muscleblind.
- * Drosophila troponin T is a novel Muscleblind target, with potential MblC involvement in programmed cell death.
- * The FKRP motif is implicated in regulating MblC's subcellular localization and apoptotic activity.

