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1.
Mol Cell ; 56(2): 311-322, 2014 Oct 23.
Article in English | MEDLINE | ID: mdl-25263597

ABSTRACT

Inhibition of muscleblind-like (MBNL) activity due to sequestration by microsatellite expansion RNAs is a major pathogenic event in the RNA-mediated disease myotonic dystrophy (DM). Although MBNL1 and MBNL2 bind to nascent transcripts to regulate alternative splicing during muscle and brain development, another major binding site for the MBNL protein family is the 3' untranslated region of target RNAs. Here, we report that depletion of Mbnl proteins in mouse embryo fibroblasts leads to misregulation of thousands of alternative polyadenylation events. HITS-CLIP and minigene reporter analyses indicate that these polyadenylation switches are a direct consequence of MBNL binding to target RNAs. Misregulated alternative polyadenylation also occurs in skeletal muscle in a mouse polyCUG model and human DM, resulting in the persistence of neonatal polyadenylation patterns. These findings reveal an additional developmental function for MBNL proteins and demonstrate that DM is characterized by misregulation of pre-mRNA processing at multiple levels.


Subject(s)
Alternative Splicing/genetics , Carrier Proteins/genetics , DNA-Binding Proteins/genetics , Polyadenylation/genetics , RNA-Binding Proteins/genetics , 3' Untranslated Regions/genetics , Animals , Binding Sites/genetics , Carrier Proteins/metabolism , Cells, Cultured , DNA-Binding Proteins/metabolism , Gene Expression Regulation, Developmental , Humans , Mice , Microsatellite Repeats/genetics , Muscle, Skeletal/cytology , Muscle, Skeletal/metabolism , Myotonic Dystrophy/genetics , Protein Binding , RNA Interference , RNA Precursors/genetics , RNA Processing, Post-Transcriptional/genetics , RNA, Messenger/metabolism , RNA, Small Interfering , RNA-Binding Proteins/metabolism
2.
EMBO Mol Med ; 5(12): 1887-900, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24293317

ABSTRACT

Myotonic dystrophy (DM) is a multi-systemic disease that impacts cardiac and skeletal muscle as well as the central nervous system (CNS). DM is unusual because it is an RNA-mediated disorder due to the expression of toxic microsatellite expansion RNAs that alter the activities of RNA processing factors, including the muscleblind-like (MBNL) proteins. While these mutant RNAs inhibit MBNL1 splicing activity in heart and skeletal muscles, Mbnl1 knockout mice fail to recapitulate the full-range of DM symptoms in these tissues. Here, we generate mouse Mbnl compound knockouts to test the hypothesis that Mbnl2 functionally compensates for Mbnl1 loss. Although Mbnl1(-/-) ; Mbnl2(-/-) double knockouts (DKOs) are embryonic lethal, Mbnl1(-/-) ; Mbnl2(+/-) mice are viable but develop cardinal features of DM muscle disease including reduced lifespan, heart conduction block, severe myotonia and progressive skeletal muscle weakness. Mbnl2 protein levels are elevated in Mbnl1(-/-) knockouts where Mbnl2 targets Mbnl1-regulated exons. These findings support the hypothesis that compound loss of MBNL function is a critical event in DM pathogenesis and provide novel mouse models to investigate additional pathways disrupted in this RNA-mediated disease.


Subject(s)
Muscle, Skeletal/metabolism , Myotonic Dystrophy/metabolism , Animals , DNA-Binding Proteins/deficiency , DNA-Binding Proteins/genetics , DNA-Binding Proteins/metabolism , Disease Models, Animal , Electrocardiography , Kaplan-Meier Estimate , Longevity/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Transgenic , Microsatellite Repeats , Muscle, Skeletal/pathology , Myocardium/metabolism , Myotonic Dystrophy/mortality , Myotonic Dystrophy/pathology , RNA Splicing , RNA-Binding Proteins/genetics , RNA-Binding Proteins/metabolism
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