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Bitte verwenden Sie diesen Link, wenn Sie dieses Dokument zitieren oder verlinken wollen: https://nbn-resolving.org/urn:nbn:de:gbv:9-opus-105536

Cas9-Mediated Nanopore Sequencing Enables Precise Characterization of Structural Variants in CCM Genes

  • Deletions in the CCM1, CCM2, and CCM3 genes are a common cause of familial cerebral cavernous malformations (CCMs). In current molecular genetic laboratories, targeted next-generation sequencing or multiplex ligation-dependent probe amplification are mostly used to identify copy number variants (CNVs). However, both techniques are limited in their ability to specify the breakpoints of CNVs and identify complex structural variants (SVs). To overcome these constraints, we established a targeted Cas9-mediated nanopore sequencing approach for CNV detection with single nucleotide resolution. Using a MinION device, we achieved complete coverage for the CCM genes and determined the exact size of CNVs in positive controls. Long-read sequencing for a CCM1 and CCM2 CNV revealed that the adjacent ANKIB1 and NACAD genes were also partially or completely deleted. In addition, an interchromosomal insertion and an inversion in CCM2 were reliably re-identified by long-read sequencing. The refinement of CNV breakpoints by long-read sequencing enabled fast and inexpensive PCR-based variant confirmation, which is highly desirable to reduce costs in subsequent family analyses. In conclusion, Cas9-mediated nanopore sequencing is a cost-effective and flexible tool for molecular genetic diagnostics which can be easily adapted to various target regions.

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Metadaten
Author: Dariush Skowronek, Robin A. Pilz, Loisa Bonde, Ole J. Schamuhn, Janne L. Feldmann, Sabine Hoffjan, Christiane D. Much, Ute Felbor, Matthias Rath
URN:urn:nbn:de:gbv:9-opus-105536
DOI:https://doi.org/10.3390/ijms232415639
ISSN:1422-0067
Parent Title (English):International Journal of Molecular Sciences
Publisher:MDPI
Place of publication:Basel
Document Type:Article
Language:English
Date of first Publication:2022/12/09
Release Date:2024/01/24
Tag:CRISPR/Cas9; cerebral cavernous malformations; copy number variants; long-read sequencing; nanopore sequencing; structural variants
Volume:23
Issue:24
Article Number:15639
Page Number:14
Faculties:Universitätsmedizin / Institut für Humangenetik
Universitätsmedizin / Interfakultäres Institut für Genetik und Funktionelle Genomforschung (UMG)
Collections:Artikel aus DFG-gefördertem Publikationsfonds
Licence (German):License LogoCreative Commons - Namensnennung