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Cited 24 time in webofscience Cited 25 time in scopus
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Molecular diagnosis of hereditary spherocytosis by multi-gene target sequencing in Korea: matching with osmotic fragility test and presence of spherocyteopen access

Authors
Choi, Hyoung SooChoi, QuteKim, Jung-AhIm, Kyong OkPark, Si NaePark, YoomiShin, Hee YoungKang, Hyoung JinKook, HoonKim, Seon YoungKim, Soo-JeongKim, InhoKim, Ji YoonKim, HawkPark, Kyung DukPark, Kyung BaePark, MeerimPark, Sang KyuPark, Eun SilPark, Jeong-APark, Jun EunPark, Ji KyoungBaek, Hee JoSeo, Jeong HoShim, Ye JeeAhn, Hyo SeopYoo, Keon HeeYoon, Hoi SooWon, Young-WoongLee, Kun SooLee, Kwang ChulLee, Mee JeongLee, Sun AhLee, Jun AhLee, Jae MinLee, Jae HeeLee, Ji WonLim, Young TakJung, Hyun JooChueh, Hee WonChoi, Eun JinJung, Hye LimKim, Ju HanLee, Dong Soon
Issue Date
23-May-2019
Publisher
BMC
Keywords
Hereditary spherocytosis; RBC membrane disorder; Molecular diagnosis
Citation
ORPHANET JOURNAL OF RARE DISEASES, v.14
Indexed
SCIE
SCOPUS
Journal Title
ORPHANET JOURNAL OF RARE DISEASES
Volume
14
URI
https://scholarworks.korea.ac.kr/kumedicine/handle/2020.sw.kumedicine/2021
DOI
10.1186/s13023-019-1070-0
ISSN
1750-1172
1750-1172
Abstract
s of HS. BackgroundCurrent diagnostic tests for hereditary spherocytosis (HS) focus on the detection of hemolysis or indirectly assessing defects of membrane protein, whereas direct methods to detect protein defects are complicated and difficult to implement. In the present study, we investigated the patterns of genetic variation associated with HS among patients clinically diagnosed with HS.MethodsMulti-gene targeted sequencing of 43 genes (17 RBC membrane protein-encoding genes, 20 RBC enzyme-encoding genes, and six additional genes for the differential diagnosis) was performed using the Illumina HiSeq platform.ResultsAmong 59 patients with HS, 50 (84.7%) had one or more significant variants in a RBC membrane protein-encoding genes. A total of 54 significant variants including 46 novel mutations were detected in six RBC membrane protein-encoding genes, with the highest number of variants found in SPTB (n=28), and followed by ANK1 (n=19), SLC4A1 (n=3), SPTA1 (n=2), EPB41 (n=1), and EPB42 (n=1). Concurrent mutations of genes encoding RBC enzymes (ALDOB, GAPDH, and GSR) were detected in three patients. UGT1A1 mutations were present in 24 patients (40.7%). Positive rate of osmotic fragility test was 86.8% among patients harboring HS-related gene mutations.ConclusionsThis constitutes the first large-scaled genetic study of Korean patients with HS. We demonstrated that multi-gene target sequencing is sensitive and feasible that can be used as a powerful tool for diagnosing HS. Considering the discrepancies of clinical and molecular diagnoses of HS, our findings suggest that molecular genetic analysis is required for accurate diagnosi
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Lee, Kwang Chul
Anam Hospital (Department of Pediatrics, Anam Hospital)
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