Genetic study of Alport syndrome in Tunisia

被引:0
作者
Younsi, Mariem El [1 ]
Achour, Ahlem [1 ,2 ]
Kraoua, Lilia [1 ,2 ]
Nesrine, Mezzi [3 ]
Sayari, Taha [4 ]
Abderrahim, Ezzeddine [5 ]
Laabidi, Janet [6 ]
Zouaghi, Mohamed Karim [7 ]
Kharrat, Maher [1 ]
Gargah, Tahar [4 ]
Trabelsi, Mediha [1 ,2 ]
M'rad, Ridha [1 ,2 ]
机构
[1] Univ Tunis El Manar, Fac Med Tunis, Lab Genet Humaine, LR99ES101007, Tunis, Tunisia
[2] Hop Charles Nicolle, Serv Malad Congenitales & Hereditaires, Tunis 1006, Tunisia
[3] Pasteur Inst Tunis, Lab Biomed Genom & Oncogenet, Tunis 1002, Tunisia
[4] Hop Charles Nicolle, Serv Nephrol Pediat, Tunis 1006, Tunisia
[5] Hop Charles Nicolle, Serv Med Interne & Nephrol Adulte, Tunis 1006, Tunisia
[6] LHop Mil Principal Instruct Tunis, Serv Nephrol, Tunis 1008, Tunisia
[7] Hop Rabta, Serv Nephrol Dialyse & Transplantat Renale, Tunis 1007, Tunisia
关键词
Alport syndrome; WES; Tunisian patients; GENOTYPE-PHENOTYPE CORRELATIONS; NATURAL-HISTORY; 195; FAMILIES; PREDICTION; MUTATIONS; DIAGNOSIS; VARIANTS; DISEASE; RNA;
D O I
10.1007/s00467-024-06474-7
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
BackgroundAlport syndrome is a genetic disorder affecting the kidneys, ears, and eyes, causing chronic kidney disease, sensorineural hearing loss, and ocular abnormalities. It results from pathogenic variants in the COL4A3, COL4A4, or COL4A5 genes, with different inheritance patterns: X-linked from COL4A5 variants, autosomal recessive from homozygous variants in COL4A3 or COL4A4, digenic from variants in both COL4A3 and COL4A4, and autosomal dominant from heterozygous variants in COL4A3 or COL4A4.MethodsWe analyzed 45 patients with Alport syndrome from 11 Tunisian families to determine their clinical and genetic characteristics. Clinical data were collected retrospectively, and whole-exome sequencing was conducted on one patient from each family. Sanger sequencing validated pathogenic variants, and cascade screening extended the analysis to 53 individuals.ResultsWe identified nine likely pathogenic variants among 11 index cases: six novel and three known variations. Of these, five were in COL4A3, and four were in COL4A5, with variants including frameshift, nonsense, missense, and alternative splicing. Most variations affected the Gly-XY codon. Among the 45 clinically identified siblings, 30 tested positive for Alport syndrome. The cascade screening identified 3 additional affected individuals, 10 unaffected siblings, and 10 unaffected parents. The mode of inheritance was autosomal recessive in six families and X-linked in four families.ConclusionsThis study is the first to screen the mutational spectrum of Alport syndrome in Tunisia. It reveals novel pathogenic variants and suggests that autosomal recessive inheritance may be more common in the Tunisian population than X-linked inheritance, contrary to existing literature.Graphical abstractA higher resolution version of the Graphical abstract is available as Supplementary information
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收藏
页码:103 / 116
页数:14
相关论文
共 52 条
  • [1] A method and server for predicting damaging missense mutations
    Adzhubei, Ivan A.
    Schmidt, Steffen
    Peshkin, Leonid
    Ramensky, Vasily E.
    Gerasimova, Anna
    Bork, Peer
    Kondrashov, Alexey S.
    Sunyaev, Shamil R.
    [J]. NATURE METHODS, 2010, 7 (04) : 248 - 249
  • [2] Next-generation sequencing in patients with familial FSGS: first report of collagen gene mutations in Tunisian patients
    Ammar, Sawssan
    Kanoun, Houda
    Kammoun, Khawla
    Domingo-Gallego, Andrea
    Ruiz, Patricia
    Lorente-Grandoso, Laura
    Pybus, Marc
    Maalej, Bayen
    Boudawara, Tahya
    Kamoun, Hassen
    Ben Hmida, Mohamed
    Ars, Elisabet
    Jarraya, Faical
    [J]. JOURNAL OF HUMAN GENETICS, 2021, 66 (08) : 795 - 803
  • [3] Vestibular and audiological findings in the Alport syndrome
    Barozzi, Stefania
    Soi, Daniela
    Intieri, Elisabetta
    Giani, Marisa
    Alde, Mirko
    Tonon, Eleonora
    Signorini, Lia
    Renieri, Alessandra
    Fallerini, Chiara
    Perin, Paola
    Montini, Giovanni
    Ambrosetti, Umberto
    [J]. AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2020, 182 (10) : 2345 - 2358
  • [4] Genotype-Phenotype Correlation in X-Linked Alport Syndrome
    Bekheirnia, Mir Reza
    Reed, Berenice
    Gregory, Martin C.
    McFann, Kim
    Shamshirsaz, Alireza Abdollah
    Masoumi, Amirali
    Schrier, Robert W.
    [J]. JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2010, 21 (05): : 876 - 883
  • [5] Consanguinity, endogamy, and genetic disorders in Tunisia
    Ben Halim N.
    Ben Alaya Bouafif N.
    Romdhane L.
    Kefi Ben Atig R.
    Chouchane I.
    Bouyacoub Y.
    Arfa I.
    Cherif W.
    Nouira S.
    Talmoudi F.
    Lasram K.
    Hsouna S.
    Ghazouani W.
    Azaiez H.
    El Matri L.
    Abid A.
    Tebib N.
    Ben Dridi M.-F.
    Kachboura S.
    Amouri A.
    Mokni M.
    Ben Arab S.
    Dellagi K.
    Abdelhak S.
    [J]. Journal of Community Genetics, 2013, 4 (2) : 273 - 284
  • [6] Alport syndrome cold cases: Missing mutations identified by exome sequencing and functional analysis
    Chiereghin, Chiara
    Robusto, Michela
    Mastrangelo, Antonio
    Castorina, Pierangela
    Montini, Giovanni
    Giani, Marisa
    Duga, Stefano
    Asselta, Rosanna
    Solda, Giulia
    [J]. PLOS ONE, 2017, 12 (06):
  • [7] Alport Syndrome: Clinical Spectrum and Therapeutic Advances
    De Gregorio, Vanessa
    Caparali, Emine Bilge
    Shojaei, Azadeh
    Ricardo, Samantha
    Barua, Moumita
    [J]. KIDNEY MEDICINE, 2023, 5 (05)
  • [8] X-linked Alport syndrome in Hellenic families: Phenotypic heterogeneity and mutations near interruptions of the collagen domain in COL4A5
    Demosthenous, P.
    Voskarides, K.
    Stylianou, K.
    Hadjigavriel, M.
    Arsali, M.
    Patsias, C.
    Georgaki, E.
    Zirogiannis, P.
    Stavrou, C.
    Daphnis, E.
    Pierides, A.
    Deltas, C.
    [J]. CLINICAL GENETICS, 2012, 81 (03) : 240 - 248
  • [9] Human Splicing Finder: an online bioinformatics tool to predict splicing signals
    Desmet, Francois-Olivier
    Hamroun, Dalil
    Lalande, Marine
    Collod-Beroud, Gwenaelle
    Claustres, Mireille
    Beroud, Christophe
    [J]. NUCLEIC ACIDS RESEARCH, 2009, 37 (09)
  • [10] Alport syndrome: impact of digenic inheritance in patients management
    Fallerini, C.
    Baldassarri, M.
    Trevisson, E.
    Morbidoni, V.
    La Manna, A.
    Lazzarin, R.
    Pasini, A.
    Barbano, G.
    Pinciaroli, A. R.
    Garosi, G.
    Frullanti, E.
    Pinto, A. M.
    Mencarelli, M. A.
    Mari, F.
    Renieri, A.
    Ariani, F.
    [J]. CLINICAL GENETICS, 2017, 92 (01) : 34 - 44