Cargando…

A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening

BACKGROUND: A newborn screening (NBS) program has been utilized to detect asymptomatic newborns with inherited metabolic diseases (IMDs). There have been some bottlenecks such as false-positives and imprecision in the current NBS tests. To overcome these issues, we developed a multigene panel for IM...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Kyoung-Jin, Park, Seungman, Lee, Eunhee, Park, Jong-Ho, Park, June-Hee, Park, Hyung-Doo, Lee, Soo-Youn, Kim, Jong-Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society for Laboratory Medicine 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5011110/
https://www.ncbi.nlm.nih.gov/pubmed/27578510
http://dx.doi.org/10.3343/alm.2016.36.6.561
_version_ 1782451763449692160
author Park, Kyoung-Jin
Park, Seungman
Lee, Eunhee
Park, Jong-Ho
Park, June-Hee
Park, Hyung-Doo
Lee, Soo-Youn
Kim, Jong-Won
author_facet Park, Kyoung-Jin
Park, Seungman
Lee, Eunhee
Park, Jong-Ho
Park, June-Hee
Park, Hyung-Doo
Lee, Soo-Youn
Kim, Jong-Won
author_sort Park, Kyoung-Jin
collection PubMed
description BACKGROUND: A newborn screening (NBS) program has been utilized to detect asymptomatic newborns with inherited metabolic diseases (IMDs). There have been some bottlenecks such as false-positives and imprecision in the current NBS tests. To overcome these issues, we developed a multigene panel for IMD testing and investigated the utility of our integrated screening model in a routine NBS environment. We also evaluated the genetic epidemiologic characteristics of IMDs in a Korean population. METHODS: In total, 269 dried blood spots with positive results from current NBS tests were collected from 120,700 consecutive newborns. We screened 97 genes related to NBS in Korea and detected IMDs, using an integrated screening model based on biochemical tests and next-generation sequencing (NGS) called NewbornSeq. Haplotype analysis was conducted to detect founder effects. RESULTS: The overall positive rate of IMDs was 20%. We identified 10 additional newborns with preventable IMDs that would not have been detected prior to the implementation of our NGS-based platform NewbornSeq. The incidence of IMDs was approximately 1 in 2,235 births. Haplotype analysis demonstrated founder effects in p.Y138X in DUOXA2, p.R885Q in DUOX2, p.Y439C in PCCB, p.R285Pfs(*)2 in SLC25A13, and p.R224Q in GALT. CONCLUSIONS: Through a population-based study in the NBS environment, we highlight the screening and epidemiological implications of NGS. The integrated screening model will effectively contribute to public health by enabling faster and more accurate IMD detection through NBS. This study suggested founder mutations as an explanation for recurrent IMD-causing mutations in the Korean population.
format Online
Article
Text
id pubmed-5011110
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher The Korean Society for Laboratory Medicine
record_format MEDLINE/PubMed
spelling pubmed-50111102016-11-01 A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening Park, Kyoung-Jin Park, Seungman Lee, Eunhee Park, Jong-Ho Park, June-Hee Park, Hyung-Doo Lee, Soo-Youn Kim, Jong-Won Ann Lab Med Original Article BACKGROUND: A newborn screening (NBS) program has been utilized to detect asymptomatic newborns with inherited metabolic diseases (IMDs). There have been some bottlenecks such as false-positives and imprecision in the current NBS tests. To overcome these issues, we developed a multigene panel for IMD testing and investigated the utility of our integrated screening model in a routine NBS environment. We also evaluated the genetic epidemiologic characteristics of IMDs in a Korean population. METHODS: In total, 269 dried blood spots with positive results from current NBS tests were collected from 120,700 consecutive newborns. We screened 97 genes related to NBS in Korea and detected IMDs, using an integrated screening model based on biochemical tests and next-generation sequencing (NGS) called NewbornSeq. Haplotype analysis was conducted to detect founder effects. RESULTS: The overall positive rate of IMDs was 20%. We identified 10 additional newborns with preventable IMDs that would not have been detected prior to the implementation of our NGS-based platform NewbornSeq. The incidence of IMDs was approximately 1 in 2,235 births. Haplotype analysis demonstrated founder effects in p.Y138X in DUOXA2, p.R885Q in DUOX2, p.Y439C in PCCB, p.R285Pfs(*)2 in SLC25A13, and p.R224Q in GALT. CONCLUSIONS: Through a population-based study in the NBS environment, we highlight the screening and epidemiological implications of NGS. The integrated screening model will effectively contribute to public health by enabling faster and more accurate IMD detection through NBS. This study suggested founder mutations as an explanation for recurrent IMD-causing mutations in the Korean population. The Korean Society for Laboratory Medicine 2016-11 2016-08-24 /pmc/articles/PMC5011110/ /pubmed/27578510 http://dx.doi.org/10.3343/alm.2016.36.6.561 Text en © The Korean Society for Laboratory Medicine. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Park, Kyoung-Jin
Park, Seungman
Lee, Eunhee
Park, Jong-Ho
Park, June-Hee
Park, Hyung-Doo
Lee, Soo-Youn
Kim, Jong-Won
A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title_full A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title_fullStr A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title_full_unstemmed A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title_short A Population-Based Genomic Study of Inherited Metabolic Diseases Detected Through Newborn Screening
title_sort population-based genomic study of inherited metabolic diseases detected through newborn screening
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5011110/
https://www.ncbi.nlm.nih.gov/pubmed/27578510
http://dx.doi.org/10.3343/alm.2016.36.6.561
work_keys_str_mv AT parkkyoungjin apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkseungman apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT leeeunhee apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkjongho apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkjunehee apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkhyungdoo apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT leesooyoun apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT kimjongwon apopulationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkkyoungjin populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkseungman populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT leeeunhee populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkjongho populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkjunehee populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT parkhyungdoo populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT leesooyoun populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening
AT kimjongwon populationbasedgenomicstudyofinheritedmetabolicdiseasesdetectedthroughnewbornscreening