Current Status of Genetic Diagnosis Laboratories and Frequency of Genetic Variants Associated with Cystic Fibrosis through a Newborn-Screening Program in Turkey

被引:8
作者
Bozdogan, Sevcan Tug [1 ,2 ]
Mujde, Cem [2 ]
Boga, Ibrahim [1 ,2 ]
Sonmezler, Ozge [2 ]
Hanta, Abdullah [2 ]
Rencuzogullari, Cagla [2 ]
Ozcan, Dilek [3 ]
Altintas, Derya Ufuk [3 ]
Bisgin, Atil [1 ,2 ]
机构
[1] Cukurova Univ, Dept Med Genet, Fac Med, TR-01250 Adana, Turkey
[2] Cukurova Univ, AGENTEM Adana Genet Dis Diag & Treatment Ctr, TR-01250 Adana, Turkey
[3] Cukurova Univ, Dept Pediat Allergy & Immunol Adana, Fac Med, TR-01250 Adana, Turkey
关键词
cystic fibrosis; newborn screening; genetic testing; population genetics; GENOTYPE-PHENOTYPE CORRELATION; CONDUCTANCE REGULATOR GENE; CFTR GENE; MUTATIONS; L997F; CHILD;
D O I
10.3390/genes12020206
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: Cystic fibrosis (CF) is the most common worldwide, life-shortening multisystem hereditary disease, with an autosomal recessive inheritance pattern caused by mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene. The national newborn screening (NBS) program for CF has been initiated in Turkey since 2015. If the immunoreactive trypsinogen (IRT) is elevated (higher than 70 mu g/L in the second control) and confirmed by sweat test or clinical findings, genetic testing is performed. The aims of this study are to emphasize the effect of NBS on the status of genetic diagnosis centers with the increasing numbers of molecular testing methods, and to determine the numbers and types of CFTR mutations in Turkey. Methods: The next-generation sequencing (NGS) and multiplex ligation-dependent probe amplification (MLPA) results of 1595 newborns, who were referred to Cukurova University Adana Genetic Diseases Diagnosis and Treatment Center (AGENTEM) for molecular genetic testing, were evaluated with positive CF NBS program results since 2017. Results: According to the results; 560 (35.1%) of the 1595 patients carried at least 1 (one) CF-related variant, while 1035 patients (64.9%) had no mutation. Compound heterozygosity for two mutations was the most common in patients, while two detected variants were homozygote in 14 patients. A total of 161 variants were detected in 561 patients with mutations. Fifteen novel variants that have not been previously reported were found. Moreover, p.L997F was identified as the most frequent pathogenic mutation that might affect the IRT measurements used for the NBS. The distribution of mutation frequencies in our study showed a difference from those previously reported; for example, the well-known p.F508del was the third most common (n = 42 alleles), rather than the first. The most striking finding is that 313 cases had a pathogenic variant together with the V470M variant, which might have a cumulative effect on CF perpetuation. Conclusion: This study is the first to determine the mutational spectrum of CFTR in correlation with the NBS program in the Turkish population. NBS for CF raises issues regarding screening in diverse populations, both medical and non-medical benefits, and carrier identification. Through the lens of NBS, we focused on the integrated diagnostic algorithms and their effect on the results of genetic testing.
引用
收藏
页码:1 / 14
页数:14
相关论文
共 30 条
[2]  
American College of Obstetricians and Gynecologists American College of Medical Genetics, 2001, PREC PREN CARR SCREE
[3]   Genotype patterns for mutations of the cystic fibrosis transmembrane conductance regulator gene: a retrospective descriptive study from Saudi Arabia [J].
Banjar, Hanaa Hasan ;
Tuleimat, Lin ;
El Seoudi, Abdul Aziz Agha ;
Mogarri, Ibrahim ;
Alhaider, Sami ;
Nizami, Imran Yaqoob ;
AlMaghamsi, Talal ;
Alkaf, Sara Andulrahman ;
Moghrabi, Nabil .
ANNALS OF SAUDI MEDICINE, 2020, 40 (01) :15-24
[4]   Cystic fibrosis: A worldwide analysis of CFTR mutations - Correlation with incidence data and application to screening [J].
Bobadilla, JL ;
Macek, M ;
Fine, JP ;
Farrell, PM .
HUMAN MUTATION, 2002, 19 (06) :575-606
[5]   Cystic fibrosis genetics: from molecular understanding to clinical application [J].
Cutting, Garry R. .
NATURE REVIEWS GENETICS, 2015, 16 (01) :45-56
[6]   The relative frequency of CFTR mutation classes in European patients with cystic fibrosis [J].
De Boeck, K. ;
Zolin, A. ;
Cuppens, H. ;
Olesen, H. V. ;
Viviani, L. .
JOURNAL OF CYSTIC FIBROSIS, 2014, 13 (04) :403-409
[7]   Best practice guidelines for molecular genetic diagnosis of cystic fibrosis and CFTR-related disorders - updated European recommendations [J].
Dequeker, Els ;
Stuhrmann, Manfred ;
Morris, Michael A. ;
Casals, Teresa ;
Castellani, Carlo ;
Claustres, Mireille ;
Cuppens, Harry ;
des Georges, Marie ;
Ferec, Claude ;
Macek, Milan ;
Pignatti, Pier-Franco ;
Scheffer, Hans ;
Schwartz, Marianne ;
Witt, Michal ;
Schwarz, Martin ;
Girodon, Emmanuelle .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2009, 17 (01) :51-65
[8]   Homozygosity for L997F in a child with normal clinical and chloride secretory phenotype provides evidence that this Cystic Fibrosis Transmembrane Conductance Regulator mutation does not cause cystic fibrosis [J].
Derichs, N ;
Schuster, A ;
Grund, I ;
Ernsting, A ;
Stolpe, C ;
Körtge-Jung, S ;
Gallati, S ;
Stuhrmann, M ;
Kozlowski, P ;
Ballmann, M .
CLINICAL GENETICS, 2005, 67 (06) :529-531
[9]   A simple, fast and inexpensive method for mutation scanning of CFTR gene [J].
Figueredo Lago, Juan Emilio ;
Armas Cayarga, Anny ;
Gonzalez Gonzalez, Yaime Josefina ;
Collazo Mesa, Teresa .
BMC MEDICAL GENETICS, 2017, 18
[10]   Mechanisms of CFTR Functional Variants That Impair Regulated Bicarbonate Permeation and Increase Risk for Pancreatitis but Not for Cystic Fibrosis [J].
LaRusch, Jessica ;
Jung, Jinsei ;
General, Ignacio J. ;
Lewis, Michele D. ;
Park, Hyun Woo ;
Brand, Randall E. ;
Gelrud, Andres ;
Anderson, Michelle A. ;
Banks, Peter A. ;
Conwell, Darwin ;
Lawrence, Christopher ;
Romagnuolo, Joseph ;
Baillie, John ;
Alkaade, Samer ;
Cote, Gregory ;
Gardner, Timothy B. ;
Amann, Stephen T. ;
Slivka, Adam ;
Sandhu, Bimaljit ;
Aloe, Amy ;
Kienholz, Michelle L. ;
Yadav, Dhiraj ;
Barmada, M. Michael ;
Bahar, Ivet ;
Lee, Min Goo ;
Whitcomb, David C. .
PLOS GENETICS, 2014, 10 (07)