Deep Intronic ETFDH Variants Represent a Recurrent Pathogenic Event in Multiple Acyl-CoA Dehydrogenase Deficiency

被引:2
作者
Martino, Stefania [1 ]
D'Addabbo, Pietro [2 ]
Turchiano, Antonella [1 ]
Radio, Francesca Clementina [3 ]
Bruselles, Alessandro [4 ]
Cordeddu, Viviana [4 ]
Mancini, Cecilia [3 ]
Stella, Alessandro [1 ]
Laforgia, Nicola [5 ,6 ]
Capodiferro, Donatella [5 ,6 ]
Simonetti, Simonetta [7 ]
Bagnulo, Rosanna [1 ]
Palumbo, Orazio [8 ]
Marzano, Flaviana [9 ]
Tabaku, Ornella [1 ]
Garganese, Antonella [10 ]
Stasi, Michele [1 ]
Tartaglia, Marco [3 ]
Pesole, Graziano [2 ,9 ]
Resta, Nicoletta [1 ]
机构
[1] Univ Bari Aldo Moro, Dept Precis & Regenerat Med & Ionian Area DiMePRe, Med Genet Unit, I-70124 Bari, Italy
[2] Univ Bari Aldo Moro, Dept Biosci Biotechnol & Environm, Via Edoardo Orabona 4, I-70125 Bari, Italy
[3] Osped Pediat Bambino Gesu, Mol Genet & Funct Genom, IRCCS, Viale San Paolo 15, I-00146 Rome, Italy
[4] Ist Super Sanita, Dept Oncol & Mol Med, Viale Regina Elena 299, I-00161 Rome, Italy
[5] Univ Bari Aldo Moro, Dept Interdisciplinary Med, Sect Neonatol, I-70121 Bari, Italy
[6] Univ Bari Aldo Moro, Dept Interdisciplinary Med, Neonatal Intens Care Unit, I-70121 Bari, Italy
[7] Univ Hosp Consortium Corp Polyclin Bari, Hosp Giovanni XXIII, Clin Patol & Neonatal Screening, I-70124 Bari, Italy
[8] Fdn IRCCS Casa Sollievo della Sofferenza, Div Med Genet, I-71013 San Giovanni Rotondo, Foggia, Italy
[9] CNR, Inst Biomembranes Bioenerget & Mol Biotechnol, Via Amendola 122-O, I-70126 Bari, Italy
[10] Univ Hosp Consortium Corp Polyclin Bari, Med Genet Unit, I-70124 Bari, Italy
关键词
ETFDH; deep intronic variant; MADD; genome sequencing; RNA sequencing; pseudo-exon; transcript processing; splicing; JOINT CONSENSUS RECOMMENDATION; SEQUENCE VARIANTS; MEDICAL GENETICS; AMERICAN-COLLEGE; STANDARDS; GENOMICS; ACMG;
D O I
10.3390/ijms25179637
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
Multiple acyl-CoA dehydrogenase deficiency (MADD) is a rare inborn error of metabolism affecting fatty acid and amino acid oxidation with an incidence of 1 in 200,000 live births. MADD has three clinical phenotypes: severe neonatal-onset with or without congenital anomalies, and a milder late-onset form. Clinical diagnosis is supported by urinary organic acid and blood acylcarnitine analysis using tandem mass spectrometry in newborn screening programs. MADD is an autosomal recessive trait caused by biallelic mutations in the ETFA, ETFB, and ETFDH genes encoding the alpha and beta subunits of the electron transfer flavoprotein (ETF) and ETF-coenzyme Q oxidoreductase enzymes. Despite significant advancements in sequencing techniques, many patients remain undiagnosed, impacting their access to clinical care and genetic counseling. In this report, we achieved a definitive molecular diagnosis in a newborn by combining whole-genome sequencing (WGS) with RNA sequencing (RNA-seq). Whole-exome sequencing and next-generation gene panels fail to detect variants, possibly affecting splicing, in deep intronic regions. Here, we report a unique deep intronic mutation in intron 1 of the ETFDH gene, c.35-959A>G, in a patient with early-onset lethal MADD, resulting in pseudo-exon inclusion. The identified variant is the third mutation reported in this region, highlighting ETFDH intron 1 vulnerability. It cannot be excluded that these intronic sequence features may be more common in other genes than is currently believed. This study highlights the importance of incorporating RNA analysis into genome-wide testing to reveal the functional consequences of intronic mutations.
引用
收藏
页数:11
相关论文
共 28 条
[1]   Risk of sudden death and acute life-threatening events in patients with glutaric acidemia type II [J].
Angle, Brad ;
Burton, Barbara K. .
MOLECULAR GENETICS AND METABOLISM, 2008, 93 (01) :36-39
[2]   Splicing in action: assessing disease causing sequence changes [J].
Baralle, D ;
Baralle, M .
JOURNAL OF MEDICAL GENETICS, 2005, 42 (10) :737-748
[3]   fastp: an ultra-fast all-in-one FASTQ preprocessor [J].
Chen, Shifu ;
Zhou, Yanqing ;
Chen, Yaru ;
Gu, Jia .
BIOINFORMATICS, 2018, 34 (17) :884-890
[4]   Late-onset form of β-electron transfer flavoprotein deficiency [J].
Curcoy, A ;
Olsen, RKJ ;
Ribes, A ;
Trenchs, V ;
Vilaseca, MA ;
Campistol, J ;
Osorio, JH ;
Andresen, BS ;
Gregersen, N .
MOLECULAR GENETICS AND METABOLISM, 2003, 78 (04) :247-249
[5]   HGVS Recommendations for the Description of Sequence Variants: 2016 Update [J].
den Dunnen, Johan T. ;
Dalgleish, Raymond ;
Maglott, Donna R. ;
Hart, Reece K. ;
Greenblatt, Marc S. ;
McGowan-Jordan, Jean ;
Roux, Anne-Francoise ;
Smith, Timothy ;
Antonarakis, Stylianos E. ;
Taschner, Peter E. M. .
HUMAN MUTATION, 2016, 37 (06) :564-569
[6]   The Human Phenotype Ontology in 2024: phenotypes around the world [J].
Gargano, Michael A. ;
Matentzoglu, Nicolas ;
Coleman, Ben ;
Addo-Lartey, Eunice B. ;
Anagnostopoulos, Anna V. ;
Anderton, Joel ;
Avillach, Paul ;
Bagley, Anita M. ;
Bakstein, Eduard ;
Balhoff, James P. ;
Baynam, Gareth ;
Bello, Susan M. ;
Berk, Michael ;
Bertram, Holli ;
Bishop, Somer ;
Blau, Hannah ;
Bodenstein, David F. ;
Botas, Pablo ;
Boztug, Kaan ;
Cady, Jolana ;
Callahan, Tiffany J. ;
Cameron, Rhiannon ;
Carbon, Seth J. ;
Castellanos, Francisco ;
Caufield, J. Harry ;
Chan, Lauren E. ;
Chute, Christopher G. ;
Cruz-Rojo, Jaime ;
Dahan-Oliel, Noemi ;
Davids, Jon R. ;
de Dieuleveult, Maud ;
de Souza, Vinicius ;
de Vries, Bert B. A. ;
de Vries, Esther ;
DePaulo, J. Raymond ;
Derfalvi, Beata ;
Dhombres, Ferdinand ;
Diaz-Byrd, Claudia ;
Dingemans, Alexander J. M. ;
Donadille, Bruno ;
Duyzend, Michael ;
Elfeky, Reem ;
Essaid, Shahim ;
Fabrizzi, Carolina ;
Fico, Giovanna ;
Firth, Helen V. ;
Freudenberg-Hua, Yun ;
Fullerton, Janice M. ;
Gabriel, Davera L. ;
Gilmour, Kimberly .
NUCLEIC ACIDS RESEARCH, 2023, 52 (D1) :D1333-D1346
[7]   AnnotSV: an integrated tool for structural variations annotation [J].
Geoffroy, Veronique ;
Herenger, Yvan ;
Kress, Arnaud ;
Stoetzel, Corinne ;
Piton, Amelie ;
Dollfus, Helene ;
Muller, Jean .
BIOINFORMATICS, 2018, 34 (20) :3572-3574
[8]   M-CAP eliminates a majority of variants of uncertain significance in clinical exomes at high sensitivity [J].
Jagadeesh, Karthik A. ;
Wenger, Aaron M. ;
Berger, Mark J. ;
Guturu, Harendra ;
Stenson, Peter D. ;
Cooper, David N. ;
Bernstein, Jonathan A. ;
Bejerano, Gill .
NATURE GENETICS, 2016, 48 (12) :1581-1586
[9]   Predicting Splicing from Primary Sequence with Deep Learning [J].
Jaganathan, Kishore ;
Panagiotopoulou, Sofia Kyriazopoulou ;
McRae, Jeremy F. ;
Darbandi, Siavash Fazel ;
Knowles, David ;
Li, Yang I. ;
Kosmicki, Jack A. ;
Arbelaez, Juan ;
Cui, Wenwu ;
Schwartz, Grace B. ;
Chow, Eric D. ;
Kanterakis, Efstathios ;
Gao, Hong ;
Kia, Amirali ;
Batzoglou, Serafim ;
Sanders, Stephan J. ;
Farh, Kyle Kai-How .
CELL, 2019, 176 (03) :535-+
[10]   PDIVAS: Pathogenicity predictor for Deep-Intronic Variants causing Aberrant Splicing [J].
Kurosawa, Ryo ;
Iida, Kei ;
Ajiro, Masahiko ;
Awaya, Tomonari ;
Yamada, Mamiko ;
Kosaki, Kenjiro ;
Hagiwara, Masatoshi .
BMC GENOMICS, 2023, 24 (01)