Exon-Specific U1s Correct SPINK5 Exon 11 Skipping Caused by a Synonymous Substitution that Affects a Bifunctional Splicing Regulatory Element

被引:28
作者
Dal Mas, Andrea [1 ]
Fortugno, Paola [2 ]
Donadon, Irving [1 ]
Levati, Lauretta [2 ]
Castiglia, Daniele [2 ]
Pagani, Franco [1 ]
机构
[1] ICGEB, Human Mol Genet, Trieste, Italy
[2] IRCCS, IDI, Lab Mol & Cell Biol, Rome, Italy
关键词
SPINK5; LEKTI; ESE; ESS; splicing defect; U1; snRNA; SMALL NUCLEAR-RNA; NETHERTON-SYNDROME; MUSCULAR-ATROPHY; GENE-THERAPY; MUTATION; EXPRESSION; DEFECTS; SNRNA; LEKTI; DISEASE;
D O I
10.1002/humu.22762
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The c.891C>T synonymous transition in SPINK5 induces exon 11 (E11) skipping and causes Netherton syndrome (NS). Using a specific RNA-protein interaction assay followed by mass spectrometry analysis along with silencing and overexpression of splicing factors, we showed that this mutation affects an exonic bifunctional splicing regulatory element composed by two partially overlapping silencer and enhancer sequences, recognized by hnRNPA1 and Tra2 splicing factors, respectively. The C-to-T substitution concomitantly increases hnRNPA1 and weakens Tra2-binding sites, leading to pathological E11 skipping. In hybrid minigenes, exon-specific U1 small nuclear RNAs (ExSpe U1s) that target by complementarity intronic sequences downstream of the donor splice site rescued the E11 skipping defect caused by the c.891C>T mutation. ExSpe U1 lentiviral-mediated transduction of primary NS keratinocytes from a patient bearing the mutation recovered the correct full-length SPINK5 mRNA and the corresponding functional lympho-epithelial Kazal-type related inhibitor protein in a dose-dependent manner. This study documents the reliability of a mutation-specific, ExSpe U1-based, splicing therapy for a relatively large subset of European NS patients. Usage of ExSpe U1 may represent a general approach for correction of splicing defects affecting skin disease genes.
引用
收藏
页码:504 / 512
页数:9
相关论文
共 38 条
[1]   An exon-specific U1 small nuclear RNA (snRNA) strategy to correct splicing defects [J].
Alanis, Eugenio Fernandez ;
Pinotti, Mirko ;
Dal Mas, Andrea ;
Balestra, Dario ;
Cavallari, Nicola ;
Rogalska, Malgorzata E. ;
Bernardi, Francesco ;
Pagani, Franco .
HUMAN MOLECULAR GENETICS, 2012, 21 (11) :2389-2398
[2]   An engineered U1 small nuclear RNA rescues splicing-defective coagulation F7 gene expression in mice [J].
Balestra, D. ;
Faella, A. ;
Margaritis, P. ;
Cavallari, N. ;
Pagani, F. ;
Bernardi, F. ;
Arruda, V. R. ;
Pinotti, M. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2014, 12 (02) :177-185
[3]   Missed threads The impact of pre-mRNA splicing defects on clinical practice [J].
Baralle, Diana ;
Lucassen, Anneke ;
Buratti, Emanuele .
EMBO REPORTS, 2009, 10 (08) :810-816
[4]   LEKTI proteolytic processing in human primary keratinocytes, tissue distribution and defective expression in Netherton syndrome [J].
Bitoun, E ;
Micheloni, A ;
Lamant, L ;
Bonnart, C ;
Tartaglia-Polcini, A ;
Cobbold, C ;
Al Saati, T ;
Mariotti, F ;
Mazereeuw-Hautier, J ;
Boralevi, F ;
Hohl, D ;
Harper, J ;
Bodemer, C ;
D'Alessio, M ;
Hovnanian, A .
HUMAN MOLECULAR GENETICS, 2003, 12 (19) :2417-2430
[5]   Defective splicing, disease and therapy: searching for master checkpoints in exon definition [J].
Buratti, Emanuele ;
Baralle, Marco ;
Baralle, Francisco E. .
NUCLEIC ACIDS RESEARCH, 2006, 34 (12) :3494-3510
[6]   Disruption of an SF2/ASF-dependent exonic splicing enhancer in SMN2 causes spinal muscular atrophy in the absence of SMN1 [J].
Cartegni, L ;
Krainer, AR .
NATURE GENETICS, 2002, 30 (04) :377-384
[7]   ESEfinder: a web resource to identify exonic splicing enhancers [J].
Cartegni, L ;
Wang, JH ;
Zhu, ZW ;
Zhang, MQ ;
Krainer, AR .
NUCLEIC ACIDS RESEARCH, 2003, 31 (13) :3568-3571
[8]   Activation of a cryptic splice site in a potentially lethal coagulation defect accounts for a functional protein variant [J].
Cavallari, Nicola ;
Balestra, Dario ;
Branchini, Alessio ;
Maestri, Iva ;
Chuamsunrit, Ampaiwan ;
Sasanakul, Werasak ;
Mariani, Guglielmo ;
Pagani, Franco ;
Bernardi, Francesco ;
Pinotti, Mirko .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2012, 1822 (07) :1109-1113
[9]   Mechanisms of alternative splicing regulation: insights from molecular and genomics approaches [J].
Chen, Mo ;
Manley, James L. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2009, 10 (11) :741-754
[10]   A founder synonymous COL7A1 mutation in three Danish families with dominant dystrophic epidermolysis bullosa pruriginosa identifies exonic regulatory sequences required for exon 87 splicing [J].
Covaciu, C. ;
Grosso, F. ;
Pisaneschi, E. ;
Zambruno, G. ;
Gregersen, P. A. ;
Sommerlund, M. ;
Hertz, J. M. ;
Castiglia, D. .
BRITISH JOURNAL OF DERMATOLOGY, 2011, 165 (03) :678-682