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Value of genetic analysis for confirming inborn errors of metabolism detected through the Spanish neonatal screening program

Authors :
Inmaculada García-Jiménez
Raquel Yahyaoui
Ana I. Vega
Isidro Vitoria
Amaya Belanger-Quintana
Carmen Delgado-Pecellín
Begoña Merinero
Celia Pérez-Cerdá
Elvira Cañedo
M.L. Couce
María Bueno-Delgado
Magdalena Ugarte
Rosa Navarrete
María Teresa García-Silva
Pilar Quijada-Fraile
María Dolores Rausell
Belén Pérez
C. Pedrón-Giner
Lourdes R. Desviat
Fátima Leal
Sinziana Stanescu
Oscar García-Campos
Ana Moráis-López
Elena Balmaseda
Elena Martín-Hernández
Ana Bergua
Inmaculada Vives
Pilar Rodríguez-Pombo
Source :
EUROPEAN JOURNAL OF HUMAN GENETICS, r-IIS La Fe. Repositorio Institucional de Producción Científica del Instituto de Investigación Sanitaria La Fe, instname
Publication Year :
2019
Publisher :
Springer Science and Business Media LLC, 2019.

Abstract

The present work describes the value of genetic analysis as a confirmatory measure following the detection of suspected inborn errors of metabolism in the Spanish newborn mass spectrometry screening program. One hundred and forty-one consecutive DNA samples were analyzed by next-generation sequencing using a customized exome sequencing panel. When required, the Illumina extended clinical exome panel was used, as was Sanger sequencing or transcriptional profiling. Biochemical tests were used to confirm the results of the genetic analysis. Using the customized panel, the metabolic disease suspected in 83 newborns (59%) was confirmed. In three further cases, two monoallelic variants were detected for two genes involved in the same biochemical pathway. In the remainder, either a single variant or no variant was identified. Given the persistent absence of biochemical alterations, carrier status was assigned in 39 cases. False positives were recorded for 11. In five cases in which the biochemical pattern was persistently altered, further genetic analysis allowed the detection of two variants affecting the function of BCAT2, ACSF3, and DNAJC12, as well as a second, deep intronic variant in ETFDH or PTS. The present results suggest that genetic analysis using extended next-generation sequencing panels can be used as a confirmatory test for suspected inborn errors of metabolism detected in newborn screening programs. Biochemical tests can be very helpful when a diagnosis is unclear. In summary, simultaneous genomic and metabolomic analyses can increase the number of inborn errors of metabolism that can be confirmed following suggestive newborn screening results.

Details

ISSN :
14765438 and 10184813
Volume :
27
Database :
OpenAIRE
Journal :
European Journal of Human Genetics
Accession number :
edsair.doi.dedup.....7fc70444607016cbb3a351a709b24af6
Full Text :
https://doi.org/10.1038/s41431-018-0330-0