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Comprehensive genetic testing approach for major inherited kidney diseases, using next-generation sequencing with a custom panel.

Authors :
Mori, Takayasu
Hosomichi, Kazuyoshi
Chiga, Motoko
Mandai, Shintaro
Nakaoka, Hirofumi
Sohara, Eisei
Okado, Tomokazu
Rai, Tatemitsu
Sasaki, Sei
Inoue, Ituro
Uchida, Shinichi
Source :
Clinical & Experimental Nephrology. Feb2017, Vol. 21 Issue 1, p63-75. 13p.
Publication Year :
2017

Abstract

Background: Gene identification of hereditary kidney diseases by DNA sequencing is important for precise diagnosis, treatment, and genetic consultations. However, the conventional Sanger sequencing is now practically powerless in the face of ever increasing numbers of reported causative genes of various hereditary diseases. The advent of next-generation sequencing technology has enabled large-scale, genome-wide, simultaneous sequence analyses of multiple candidate genes. Methods: We designed and verified a comprehensive diagnosis panel for approximately 100 major inherited kidney diseases, including 127 known genes. The panel was named Simple, sPEedy and Efficient Diagnosis of Inherited KIdney Diseases (SPEEDI-KID). We applied the panel to 73 individuals, clinically diagnosed with an inherited kidney disease, from 56 families. Results: The panel efficiently covered the candidate genes and allowed a prompt and accurate genetic diagnosis. Moreover, 18 unreported mutations suspected as the disease causes were detected. All these mutations were validated by Sanger sequencing, with 100 % concordance. Conclusion: In conclusion, we developed a powerful diagnostic method, focusing on inherited kidney diseases, using a custom panel, SPEEDI-KID, allowing a fast, easy, and comprehensive diagnosis regardless of the disease type. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13421751
Volume :
21
Issue :
1
Database :
Academic Search Index
Journal :
Clinical & Experimental Nephrology
Publication Type :
Academic Journal
Accession number :
121014972
Full Text :
https://doi.org/10.1007/s10157-016-1252-1