Enhanced Exon-skipping Induced by U7 snRNA Carrying a Splicing Silencer Sequence: Promising Tool for DMD Therapy

被引:60
作者
Goyenvalle, Aurelie [1 ]
Babbs, Arran [1 ]
van Ommen, Gert-Jan B. [2 ]
Garcia, Luis [3 ]
Davies, Kay E. [1 ]
机构
[1] Univ Oxford, MRC Funct Genom Unit, Dept Physiol Anat & Genet, Oxford OX1 3PT, England
[2] Leiden Univ, Dept Human Genet, Med Ctr, NL-2300 RA Leiden, Netherlands
[3] UPMC, INSERM, UMR S 787, Inst Myol, Paris, France
关键词
PRE-MESSENGER-RNA; DUCHENNE MUSCULAR-DYSTROPHY; ADENOASSOCIATED VIRUS VECTORS; ANTISENSE OLIGONUCLEOTIDES; MUSCLE-CELLS; BINDING-SITES; GENE-THERAPY; MDX MOUSE; MICE; EFFICIENT;
D O I
10.1038/mt.2009.113
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Duchenne muscular dystrophy (DMD) is a fatal muscle wasting disorder caused by mutations in the dystrophin gene. In most cases, the open-reading frame is disrupted which results in the absence of functional protein. Antisense-mediated exon skipping is one of the most promising approaches for the treatment of DMD and has recently been shown to correct the reading frame and restore dystrophin expression in vitro and in vivo. Specific exon skipping can be achieved using synthetic oligonucleotides or viral vectors encoding modified small nuclear RNAs (snRNAs), by masking important splicing sites. In this study, we demonstrate that enhanced exon skipping can be induced by a U7 snRNA carrying binding sites for the heterogeneous ribonucleoprotein A1 (hnRNPA1). In DMD patient cells, bifunctional U7 snRNAs harboring silencer motifs induce complete skipping of exon 51, and thus restore dystrophin expression to near wild-type levels. Furthermore, we show the efficacy of these constructs in vivo in transgenic mice carrying the entire human DMD locus after intramuscular injection of adeno-associated virus (AAV) vectors encoding the bifunctional U7 snRNA. These new constructs are very promising for the optimization of therapeutic exon skipping for DMD, but also offer powerful and versatile tools to modulate pre-mRNA splicing in a wide range of applications.
引用
收藏
页码:1234 / 1240
页数:7
相关论文
共 34 条
[1]   Therapeutic modulation of DMD splicing by blocking exonic splicing enhancer sites with antisense oligonucleotides [J].
Aartsma-Rus, A. ;
Janson, A. A. M. ;
Heemskerk, J. A. ;
De Winter, C. L. ;
Van Ommen, G. -J. B. ;
Van Deutekom, J. C. T. .
OLIGONUCLEOTIDE THERAPEUTICS, 2006, 1082 :74-76
[2]   Targeted exon skipping as a potential gene correction therapy for Duchenne muscular dystrophy [J].
Aartsma-Rus, A ;
Bremmer-Bout, M ;
Janson, AAM ;
den Dunnen, JT ;
van Ommen, GJB ;
van Deutekom, JCT .
NEUROMUSCULAR DISORDERS, 2002, 12 :S71-S77
[3]   Functional analysis of 114 exon-internal AONs for targeted DMD exon skipping: Indication for steric hindrance of SR protein binding sites [J].
Aartsma-Rus, A ;
De Winter, CL ;
Janson, AAM ;
Kaman, WE ;
Van Ommen, GJB ;
Den Dunnen, JT ;
van Deutekom, JCT .
OLIGONUCLEOTIDES, 2005, 15 (04) :284-297
[4]   Therapeutic antisense-induced exon skipping in cultured muscle cells from six different DMD patients [J].
Aartsma-Rus, A ;
Janson, AAM ;
Kaman, WE ;
Bremmer-Bout, M ;
den Dunnen, JT ;
Baas, F ;
van Ommen, GJB ;
van Deutekom, JCT .
HUMAN MOLECULAR GENETICS, 2003, 12 (08) :907-914
[5]   Comparative analysis of antisense oligonucleotide sequences for targeted skipping of Exon 51 during dystrophin Pre-mRNA splicing in human muscle [J].
Arechavala-Gomeza, V. ;
Graham, I. R. ;
Popplewell, L. J. ;
Adams, A. M. ;
Aartsma-Rus, A. ;
Kinali, M. ;
Morgan, J. E. ;
Van Deutekom, J. C. ;
Wilton, S. D. ;
Dickson, G. ;
Muntoni, F. .
HUMAN GENE THERAPY, 2007, 18 (09) :798-810
[6]   Restoration of human dystrophin following transplantation of exon-skipping-engineered DMD patient stem cells into dystrophic mice [J].
Benchaouir, Rachid ;
Meregalli, Mirella ;
Farini, Andrea ;
D'Antona, Giuseppe ;
Belicchi, Marzia ;
Goyenvalle, Aurelie ;
Battistelli, Maurizio ;
Bresolin, Nereo ;
Bottinelli, Roberto ;
Garcia, Luis ;
Torrente, Yvan .
CELL STEM CELL, 2007, 1 (06) :646-657
[7]   Gene therapy strategies for Duchenne muscular dystrophy utilizing recombinant adeno-associated virus vectors [J].
Blankinship, MJ ;
Gregorevic, P ;
Chamberlain, JS .
MOLECULAR THERAPY, 2006, 13 (02) :241-249
[8]   Targeted exon skipping in transgenic hDMD mice:: A model for direct preclinical screening of human-specific antisense oligonucleotides [J].
Bremmer-Bout, M ;
Aartsma-Rus, A ;
de Meijer, EJ ;
Kaman, WE ;
Janson, AAM ;
Vossen, RHAM ;
van Ommen, GJB ;
den Dunnen, JT ;
van Deutekom, JCT .
MOLECULAR THERAPY, 2004, 10 (02) :232-240
[9]   U7 snRNAs induce correction of mutated dystrophin pre-mRNA by exon skipping [J].
Brun, C ;
Suter, D ;
Pauli, C ;
Dunant, P ;
Lochmüller, H ;
Burgunder, JM ;
Schümperli, D ;
Weis, J .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2003, 60 (03) :557-566
[10]   RNA-BINDING SPECIFICITY OF HNRNP A1 - SIGNIFICANCE OF HNRNP A1 HIGH-AFFINITY BINDING-SITES IN PRE-MESSENGER-RNA SPLICING [J].
BURD, CG ;
DREYFUSS, G .
EMBO JOURNAL, 1994, 13 (05) :1197-1204