Literature DB >> 36198806

Identification and characterization of two DMD pedigrees with large inversion mutations based on a long-read sequencing pipeline.

Chang Geng1, Ciliu Zhang2, Pidong Li3, Yuanren Tong1, Baosheng Zhu4, Jing He4, Yanhuan Zhao1, Fengxia Yao5, Li-Ying Cui1, Fan Liang3, Yang Wang3, Yaru Wang3, Hongshuai Jin3, Dandan Lang3, Shanlin Liu3, Depeng Wang3, Min S Park3, Lin Chen1, Jing Peng6, Yi Dai7.   

Abstract

Pathogenic large inversions are rarely reported on DMD gene due to the lack of effective detection methods. Here we report two DMD pedigrees and proposed a reliable pipeline to define large inversions in DMD patients. In the first pedigree, conventional approaches including multiplex ligation-dependent probe amplification, and whole-exome sequencing by next generation sequencing were failed to detect any pathologic variant. Then an advanced analysis pipeline which consists of RNA-seq, cDNA array capture sequencing, optical mapping, long-read sequencing was built. RNA-seq and cDNA capture sequencing showed a complete absence of transcripts of exons 3-55. Optical mapping identified a 55 Mb pericentric inversion between Xp21 and Xq21. Subsequently, long-read sequencing and Sanger sequencing determined the inversion breakpoints at 32,915,769 and 87,989,324 of the X chromosomes. In the second pedigree, long-read sequencing was directly conducted and Sanger sequencing was performed to verify the mutation. Long-read sequencing and Sanger sequencing found breakpoints at 32,581,576 and 127,797,236 on DMD gene directly. In conclusion, large inversion might be a rare but important mutation type in DMD gene. An effective pipeline was built in detecting large inversion mutations based on long-read sequencing platforms.
© 2022. The Author(s), under exclusive licence to European Society of Human Genetics.

Entities:  

Year:  2022        PMID: 36198806     DOI: 10.1038/s41431-022-01190-y

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   5.351


  2 in total

1.  The molecular basis for Duchenne versus Becker muscular dystrophy: correlation of severity with type of deletion.

Authors:  M Koenig; A H Beggs; M Moyer; S Scherpf; K Heindrich; T Bettecken; G Meng; C R Müller; M Lindlöf; H Kaariainen; A de la Chapellet; A Kiuru; M L Savontaus; H Gilgenkrantz; D Récan; J Chelly; J C Kaplan; A E Covone; N Archidiacono; G Romeo; S Liechti-Gailati; V Schneider; S Braga; H Moser; B T Darras; P Murphy; U Francke; J D Chen; G Morgan; M Denton; C R Greenberg; K Wrogemann; L A Blonden; M B van Paassen; G J van Ommen; L M Kunkel
Journal:  Am J Hum Genet       Date:  1989-10       Impact factor: 11.025

2.  RNA-seq in DMD urinary stem cells recognized muscle-related transcription signatures and addressed the identification of atypical mutations by whole-genome sequencing.

Authors:  Maria S Falzarano; Andrea Grilli; Silvia Zia; Mingyan Fang; Rachele Rossi; Francesca Gualandi; Paola Rimessi; Reem El Dani; Marina Fabris; Zhiyuan Lu; Wenyan Li; Tiziana Mongini; Federica Ricci; Elena Pegoraro; Luca Bello; Andrea Barp; Valeria A Sansone; Madhuri Hegde; Barbara Roda; Pierluigi Reschiglian; Silvio Bicciato; Rita Selvatici; Alessandra Ferlini
Journal:  HGG Adv       Date:  2021-08-24
  2 in total

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