Counteracting the Common Shwachman-Diamond Syndrome-Causing SBDS c.258+2T>C Mutation by RNA Therapeutics and Base/Prime Editing

被引:6
作者
Peretto, Laura [1 ]
Tonetto, Elena [1 ]
Maestri, Iva [2 ]
Bezzerri, Valentino [3 ]
Valli, Roberto [4 ]
Cipolli, Marco [3 ]
Pinotti, Mirko [1 ]
Balestra, Dario [1 ]
机构
[1] Univ Ferrara, Dept Life Sci & Biotechnol, LTTA, I-44121 Ferrara, Italy
[2] Univ Ferrara, Dept Translat Med & Romagna, I-44123 Ferrara, Italy
[3] Univ Integrata Verona, Azienda Osped, Cyst Fibrosis Ctr, I-37126 Verona, Italy
[4] Univ Insubria, Dept Med & Surg, I-21100 Varese, Italy
关键词
SBDS; Shwachman-Diamond syndrome; U1snRNA; base editor; prime editor; genome editing; trans-splicing; PTM; RESCUE; SITES; MICE;
D O I
10.3390/ijms24044024
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Shwachman-Diamond syndrome (SDS) represents one of the most common inherited bone marrow failure syndromes and is mainly caused by SBDS gene mutations. Only supportive treatments are available, with hematopoietic cell transplantation required when marrow failure occurs. Among all causative mutations, the SBDS c.258+2T>C variant at the 5 ' splice site (ss) of exon 2 is one of the most frequent. Here, we investigated the molecular mechanisms underlying aberrant SBDS splicing and showed that SBDS exon 2 is dense in splicing regulatory elements and cryptic splice sites, complicating proper 5 ' ss selection. Studies ex vivo and in vitro demonstrated that the mutation alters splicing, but it is also compatible with tiny amounts of correct transcripts, which would explain the survival of SDS patients. Moreover, for the first time for SDS, we explored a panel of correction approaches at the RNA and DNA levels and provided experimental evidence that the mutation effect can be partially counteracted by engineered U1snRNA, trans-splicing, and base/prime editors, ultimately leading to correctly spliced transcripts (from barely detectable to 2.5-5.5%). Among them, we propose DNA editors that, by stably reverting the mutation and potentially conferring positive selection to bone-marrow cells, could lead to the development of an innovative SDS therapy.
引用
收藏
页数:13
相关论文
共 45 条
[31]   Dissection of pleiotropic effects of variants in and adjacent to F8 exon 19 and rescue of mRNA splicing and protein function [J].
Lombardi, Silvia ;
Leo, Gabriele ;
Merlin, Simone ;
Follenzi, Antonia ;
McVey, John H. ;
Maestri, Iva ;
Bernardi, Francesco ;
Pinotti, Mirko ;
Balestra, Dario .
AMERICAN JOURNAL OF HUMAN GENETICS, 2021, 108 (08) :1512-1525
[32]   Dystrophin rescue by trans-splicing: a strategy for DMD genotypes not eligible for exon skipping approaches [J].
Lorain, Stephanie ;
Peccate, Cecile ;
Le Hir, Maeva ;
Griffith, Graziella ;
Philippi, Susanne ;
Precigout, Guillaume ;
Mamchaoui, Kamel ;
Jollet, Arnaud ;
Voit, Thomas ;
Garcia, Luis .
NUCLEIC ACIDS RESEARCH, 2013, 41 (17) :8391-8402
[33]   5′RNA Trans-Splicing Repair of COL7A1 Mutant Transcripts in Epidermolysis Bullosa [J].
Mayr, Elisabeth ;
Ablinger, Michael ;
Lettner, Thomas ;
Murauer, Eva M. ;
Guttmann-Gruber, Christina ;
Pinon Hofbauer, Josefina ;
Hainzl, Stefan ;
Kaiser, Manfred ;
Klausegger, Alfred ;
Bauer, Johann W. ;
Koller, Ulrich ;
Wally, Verena .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (03)
[34]   Therapeutic activity of modified U1 core spliceosomal particles [J].
Rogalska, Malgorzata Ewa ;
Tajnik, Mojca ;
Licastro, Danilo ;
Bussani, Erica ;
Camparini, Luca ;
Mattioli, Chiara ;
Pagani, Franco .
NATURE COMMUNICATIONS, 2016, 7
[35]   OTC intron 4 variations mediate pathogenic splicing patterns caused by the c.386G>A mutation in humans and spfash mice, and govern susceptibility to RNA-based therapies [J].
Sacchetto, Claudia ;
Peretto, Laura ;
Baralle, Francisco ;
Maestri, Iva ;
Tassi, Francesca ;
Bernardi, Francesco ;
van de Graaf, Stan F. J. ;
Pagani, Franco ;
Pinotti, Mirko ;
Balestra, Dario .
MOLECULAR MEDICINE, 2021, 27 (01)
[36]   The somatic FAH C. 1061C>A change counteracts the frequent FAH c. 1062+5G>A mutation and permits U1snRNA-based splicing correction [J].
Scalet, Daniela ;
Sacchetto, Claudia ;
Bernardi, Francesco ;
Pinotti, Mirko ;
van de Graaf, Stan F. J. ;
Balestra, Dario .
JOURNAL OF HUMAN GENETICS, 2018, 63 (05) :683-686
[37]   Exploring Splicing-Switching Molecules For Seckel Syndrome Therapy [J].
Scalet, Daniela ;
Balestra, Dario ;
Rohban, Sara ;
Bovolenta, Matteo ;
Perrone, Daniela ;
Bernardi, Francesco ;
Campaner, Stefano ;
Pinotti, Mirko .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 2017, 1863 (01) :15-20
[38]   TRANS SPLICING OF MESSENGER-RNA PRECURSORS [J].
SOLNICK, D .
CELL, 1985, 42 (01) :157-164
[39]   Trans-splicing repair of CD40 ligand deficiency results in naturally regulated correction of a mouse model of hyper-IgM X-linked immunodeficiency [J].
Tahara, M ;
Pergolizzi, RG ;
Kobayashi, H ;
Krause, A ;
Luettich, K ;
Lesser, ML ;
Crystal, RG .
NATURE MEDICINE, 2004, 10 (08) :835-841
[40]   Human GC-AG alternative intron isoforms with weak donor sites show enhanced consensus at acceptor exon positions [J].
Thanaraj, TA ;
Clark, F .
NUCLEIC ACIDS RESEARCH, 2001, 29 (12) :2581-2593