2.Genetic analysis and reproductive intervention of 7 families with gonadal mosaicism for Duchenne muscular dystrophy.
Bodi GAO ; Xiaowen YANG ; Xiao HU ; Wenbing HE ; Xiaomeng ZHAO ; Fei GONG ; Juan DU ; Qianjun ZHANG ; Guangxiu LU ; Ge LIN ; Wen LI
Chinese Journal of Medical Genetics 2023;40(4):423-428
OBJECTIVE:
To explore the genetic basis for 7 families with gonadal mosaicism for Duchenne muscular dystrophy (DMD).
METHODS:
For the 7 families presented at the CITIC Xiangya Reproductive and Genetic Hospital from September 2014 to March 2022, clinical data were collected. Preimplantation genetic testing for monogenic disorders (PGT-M) was carried out for the mother of the proband from family 6. Peripheral venous blood samples of the probands, their mothers and other patients from the families, amniotic fluid samples from families 1 ~ 4 and biopsied cells of embryos cultured in vitro from family 6 were collected for the extraction of genomic DNA. Multiplex ligation-dependent probe amplification (MLPA) was carried out for the DMD gene, and short tandem repeat (STR)/single nucleotide polymorphism (SNP)-based haplotypes were constructed for the probands, other patients, fetuses and embryos.
RESULTS:
The results of MLPA showed that the probands and the fetuses/probands' brothers in families 1 ~ 4, 5, 7 had carried the same DMD gene variants, whilst the probands' mothers were all normal. The proband in family 6 carried the same DMD gene variant with only 1 embryo (9 in total) cultured in vitro, and the DMD gene of the proband's mother and the fetus obtained through the PGT-M were normal. STR-based haplotype analysis showed that the probands and the fetuses/probands' brothers in families 1 ~ 3 and 5 have inherited the same maternal X chromosome. SNP-based haplotype analysis showed that the proband from family 6 has inherited the same maternal X chromosome with only 1 embryo (9 in total) cultured in vitro. The fetuses in families 1 and 6 (via PGT-M) were both confirmed to be healthy by follow up, whilst the mothers from families 2 and 3 had chosen induced labor.
CONCLUSION
Haplotype analysis based on STR/SNP is an effective method for judging gonad mosaicism. Gonad mosaicisms should be suspected for women who have given births to children with DMD gene variants but with a normal peripheral blood genotype. Prenatal diagnosis and reproductive intervention may be adapted to reduce the births of further affected children in such families.
Male
;
Pregnancy
;
Child
;
Humans
;
Female
;
Muscular Dystrophy, Duchenne/diagnosis*
;
Dystrophin/genetics*
;
Mosaicism
;
Exons
;
Prenatal Diagnosis/methods*
;
Nucleotides
3.Genetic testing and prenatal diagnosis of 671 Chinese pedigrees affected with Duchenne/Becker muscular dystrophy.
Shikun LUO ; Wenbin HE ; Xiaomeng ZHAO ; Xiaowen YANG ; Bodi GAO ; Shuangfei LI ; Juan DU ; Qianjun ZHANG ; Yueqiu TAN ; Guangxiu LU ; Ge LIN ; Wen LI
Chinese Journal of Medical Genetics 2022;39(9):925-931
OBJECTIVE:
To summarize the genetic characteristics of 671 Chinese pedigrees affected with Duchenne/Becker muscular dystrophy (DMD/BMD).
METHODS:
Clinical data of the pedigrees were collected. Multiplex PCR, multiple ligation dependent probe amplification (MLPA), next generation sequencing (NGS), Sanger sequencing and long read sequencing were used to detect the variant of DMD gene in the probands and their mothers, and prenatal diagnosis was provided for high risk pregnant women.
RESULTS:
Among 178 pedigrees analyzed by multiplex PCR, 44 variants of the DMD gene were detected, with the genetic diagnosis attained in 110 pedigrees. Among 493 pedigrees analyzed by MLPA in combination with NGS or Sanger sequencing, 294 pathogenic/possible pathogenic variants were identified, among which 45 were unreported previously, and the genetic diagnosis attained in 484 pedigrees. Structural variants of the DMD gene were identified in two pedigrees by long-read sequencing. Among 444 probands, 341 have inherited the DMD gene variant from their mothers (76.8%). Among 390 women with a high-risk, 339 have opted to have natural pregnancy and 51 chose preimplantation genetic testing for monogenetic disease (PGT-M). The detection rate of neonatal patients and carriers following natural pregnancy was significantly higher than that for PGT-M.
CONCLUSION
Combined application of MLPA, NGS, Sanger sequencing and long-read sequencing is an effective strategy to detect DMD/BMD. PGT-M can effectively reduce the risk of fetuses. Above finding has expanded the spectrum of DMD gene variants and provided a basis for reproductive intervention for pregnancies with a high risk for DMD/BMD.
China
;
Dystrophin/genetics*
;
Exons
;
Female
;
Genetic Testing
;
Humans
;
Infant, Newborn
;
Multiplex Polymerase Chain Reaction
;
Muscular Dystrophy, Duchenne/genetics*
;
Mutation
;
Pedigree
;
Pregnancy
;
Prenatal Diagnosis
4.Diagnosis of a patient with adjacent gene deletion syndrome with DMD complete deletion type of Duchenne muscular dystrophy.
Lina LIU ; Li WANG ; Zhihui JIAO ; Xiangdong KONG
Chinese Journal of Medical Genetics 2021;38(9):869-872
OBJECTIVE:
To identify the etiology of a patient with severe symptoms of DMD and to trace its pathogenic gene, so as to provide a basis for genetic counseling and clinical intervention.
METHODS:
Multiple ligation-dependent probe amplification (MLPA) technique was used to analyze exon deletion/repetitive variant of DMD gene, and further analysis was performed by chromosome G-banding, fluorescence in situ hybridization (FISH) and SNP array analysis.
RESULTS:
The MLPA results of the proband showed that the exon 1-79 of DMD gene were deleted, the G-banding karyotype of blood sample was 46, XY, and the deletion of the short arm of X chromosome was found by FISH. SNP array results showed that 5.8Mb (29 628 158-35 434 714) deletion occurred in the Xp21.2p21.1 region of X chromosome, and the patient was diagnosed as the contiguous deletion syndrome involving the genes of IL1RAPL, MAGEB1-4, ROB, CXorf2, GM, AP3K7IP, FTHL1, DMD, FAM47A, TMEM47, and FAM47B.
CONCLUSION
The exact pathogenic site of this family is the deletion of 5.8 Mb (29 628 158-35 434 714) in the Xp21.2p21.1 region of X chromosome, which can be used for prenatal diagnosis. High resolution SNP array technique plays an important role in detecting potential chromosome abnormalities in patients.
Dystrophin/genetics*
;
Exons
;
Female
;
Gene Deletion
;
Humans
;
In Situ Hybridization, Fluorescence
;
Muscular Dystrophy, Duchenne/genetics*
;
Pregnancy
;
Prenatal Diagnosis
5.Basal cell nevus syndrome with Duchenne muscular dystrophy: a case report.
Zi-Yi TIAN ; Wen MA ; Zhi-Yue ZHAO ; Ming LI
West China Journal of Stomatology 2021;39(2):230-232
Basal cell nevus syndrome (BCNS), also known as Gorlin-Goltz syndrome, is a rare autosomal dominant genetic disease. It is thought to be caused by a mutation in the PTCH1 gene, and its incidence is 1/57 000 to 1/256 000. The case of a 7-year-old patient with BCNS and Duchenne muscular dystrophy was reported in this paper.
Basal Cell Nevus Syndrome/diagnosis*
;
Child
;
Humans
;
Muscular Dystrophy, Duchenne
;
Mutation
6.Carrier screening model for Duchenne muscular dystrophy for women of reproductive age based on a pre-pregnancy birth defect control platform.
Jinxian ZHENG ; Shuai HAN ; Wen YE ; Shulie YAO ; Ming QI ; Jianfen CHEN ; Hong XU
Chinese Journal of Medical Genetics 2021;38(5):485-487
OBJECTIVE:
To establish a screening model for females of reproductive age carrying Duchenne muscular dystrophy (DMD) variants based on a current community health examination platform.
METHODS:
A total of 61 870 participants were recruited between October 2017 and October 2019. Serum creatine kinase (CK) was measured with a Roche Cobasc 701/702 using an enzymatic rate method. Genetic testing was offered to those with a CK level of ≥ 200 U/L. For carriers of DMD variants, genetic counseling and follow up were provided.
RESULTS:
For the 61 870 females participating in the program, 1078 were found with raised serum CK (≥ 200 U/L), of which 618 (57.33%) accepted CK re-measurement after at least a two-week interval. One hundred and twenty cases were found with sustained serum CK elevation, of which 6 were confirmed to be definite DMD carriers regardless of family history. Genetic testing was provided to 33 females with a family history for DMD, and 13 were determined as definite carriers. An affected fetus was detected by prenatal diagnosis. After genetic counseling, the parents had opted induced abortion.
CONCLUSION
Large-scale DMD carrier screening through a three-step approach based on the current community health examination platform is both feasible and cost effective.
Female
;
Genetic Carrier Screening
;
Genetic Counseling
;
Genetic Testing
;
Humans
;
Muscular Dystrophy, Duchenne/genetics*
;
Pregnancy
;
Prenatal Diagnosis
7.Germinal mosaicism for partial deletion of the Dystrophin gene in a family affected with Duchenne muscular dystrophy.
Hai XIAO ; Zhaojing ZHANG ; Tao LI ; Qian ZHANG ; Qiannan GUO ; Dong WU ; Hongdan WANG ; Mengting ZHANG ; Yue GAO ; Shixiu LIAO
Chinese Journal of Medical Genetics 2019;36(10):1015-1018
OBJECTIVE:
To carry out genetic testing and prenatal diagnosis for a family affected with Duchenne muscular dystrophy (DMD).
METHODS:
Multiplex ligation dependent probe amplification (MLPA) was used to detect potential deletion and duplication of the Dystrophin gene. Haplotype analysis was performed using five short tandem repeat polymorphism loci (3'-STR, 5'-STR, 45-STR, 49-STR, 50-STR of the DMD gene.
RESULTS:
A same deletional mutation (exons 51-55) of the DMD gene was detected in two brothers but not in their mother. The patients and fetus have inherited different haplotypes of the Dystrophin gene from their mother, suggesting that the fetus was unaffected.
CONCLUSION
The mother was very likely to harbor germline mosaicism for the Dystrophin gene variant. Genetic testing of peripheral blood samples cannot rule out germline mosaicism in the mother. Prenatal diagnosis should be provided for subsequent pregnancies in this family.
Dystrophin
;
genetics
;
Exons
;
Female
;
Gene Deletion
;
Germ-Line Mutation
;
Humans
;
Male
;
Mosaicism
;
Muscular Dystrophy, Duchenne
;
genetics
;
Pregnancy
;
Prenatal Diagnosis
8.Mutation analysis and prenatal diagnosis for 50 pedigrees affected with Duchenne/Becker muscular dystrophy.
Huanzheng LI ; Chenyang XU ; Yijian MAO ; Jinfang LU ; Yanbao XIANG ; Xueqin XU ; Shaohua TANG
Chinese Journal of Medical Genetics 2018;35(2):169-174
OBJECTIVETo establish individualized prenatal diagnosis program for families affected with Duchenne/Becker muscular dystrophy (DMD/BMD) and different clinical background using a variety of methods.
METHODSMultiplex ligation-dependent probe amplification (MLPA) was performed on 50 patients suspected for DMD/BMD. For single exon deletions of the DMD gene, PCR was used for validating the results. For those without any deletion or duplication, Sanger sequencing was used to screen for DMD gene mutations in the children and their mothers. Prenatal genetic testing was provided to female carriers using chorionic villus, amniocentesis or cord blood samples. To ensure the accuracy of diagnosis, all prenatal specimens were also subjected to linkage analysis.
RESULTSAmong the 50 patients with DMD/BMD, 23 harbored large deletions, 11 only had single exon deletions, 10 harbored duplications, and 5 had small scare mutations. No mutation was detected in one family. For 37 women undergoing prenatal diagnosis, 10 fetuses were identified as affected males, 6 were female carriers, while 21 were not found to carry any mutation. Testing of creatine kinase was consistent with the results of prenatal diagnosis. For a patient harboring exon 51 deletion, the same mutation was found in a fetus but not in their mother. The proband and fetus had inherited the same haplotype, which suggested that the mother probably has germline mosaicism for the mutation.
CONCLUSIONApplication of individualized methods for analyzing pregnant women with different clinical background can minimize the risk for giving birth to further children affected with DMD/BMD.
Adolescent ; Child ; Child, Preschool ; DNA Mutational Analysis ; Exons ; Female ; Humans ; Male ; Multiplex Polymerase Chain Reaction ; Muscular Dystrophy, Duchenne ; diagnosis ; genetics ; Mutation ; Pedigree ; Pregnancy ; Prenatal Diagnosis
9.Identification of two novel Duchenne muscular dystrophies mutations in patients with Becker muscular dystrophy.
Dahye KIM ; Yoon Myung KIM ; Go Hun SEO ; Gu Hwan KIM ; Han Wook YOO ; Mi Sun YUM ; Tae Sung KO ; Beom Hee LEE
Journal of Genetic Medicine 2017;14(2):75-79
Duchenne and Becker muscular dystrophies (DMD and BMD, respectively) are X-linked neuromuscular disorders characterized by progressive muscle weakness and severe skeletal muscle degeneration. BMD is a milder form with a later onset. Patients with BMD tend to survive much longer than those with DMD. The differentiation between DMD and BMD is important in the genetic counseling of affected patients and their families. Since muscle biopsies are invasive procedures, the differential diagnosis of BMD and DMD is often dependent on the mutation identified in the DMD gene in affected patients. However, when a novel DMD mutation is identified, the differential diagnosis should be based on muscle biopsy findings with other clinical findings. Here we describe two Korean patients with BMD confirmed by muscle biopsy and genetic testing. Two novel exonic deletions in the DMD gene were identified.
Biopsy
;
Diagnosis, Differential
;
Exons
;
Genetic Counseling
;
Genetic Testing
;
Humans
;
Muscle Weakness
;
Muscle, Skeletal
;
Muscular Dystrophies*
;
Muscular Dystrophy, Duchenne*
10.Early Marker of Myocardial Deformation in Children with Duchenne Muscular Dystrophy Assessed Using Echocardiographic Myocardial Strain Analysis.
Won Ha JO ; Lucy Youngmin EUN ; Jo Won JUNG ; Jae Young CHOI ; Seung Woong GANG
Yonsei Medical Journal 2016;57(4):900-904
PURPOSE: As cardiomyopathy is more prevalent and currently the leading cause of death in Duchenne muscular dystrophy (DMD), early detection of myocardial involvement is important. The purpose of this study was to analyze myocardial strain in DMD children, for the possibility of early detection of myocardial dysfunction. MATERIALS AND METHODS: We reviewed medical records of DMD patients who were >10 years of age (15.6±1.6 years, 12.5-18 years), from March 2013 to June 2014. Data of 24 DMD children who underwent echocardiography with three-layer specific myocardial strain were compared with 24 controls (age: 9.3±4.0 years, 5.5-17 years). RESULTS: Epicardial longitudinal strain was lower in DMD (DMD: -9.3±3.8%; control: -12.3±4.3%; p=0.012). Radial strain (DMD: 24.1±11.1%; control: 37.3±25.9%; p=0.027) and strain rate (SR) (DMD: 1.68±0.91; control: 2.42±0.84; p=0.006) on parasternal short axis view were lower in DMD. Circumferential strains in the endocardium (DMD: -17.5±4.7%; control: -24.2±5.3%; p<0.001), myocardium (DMD: -12.7±3.8%; control: -18.0±4.0%; p<0.001), and epicardium (DMD: -8.4±4.0%; control: -12.2±5.0%; p=0.006) were significantly decreased in DMD. Circumferential SRs were lower in the endocardial (DMD: -1.46±0.38; control: -1.78±0.27; p=0.002) and myocardial layers (DMD: 1.02±0.27; control: -1.28±0.22; p=0.001). CONCLUSION: In DMD patients, deteriorations in myocardial circumferential strain might be an indicator for predicting cardiomyopathy.
Adolescent
;
Cardiomyopathies/*diagnostic imaging/*etiology
;
Case-Control Studies
;
Child
;
Child, Preschool
;
Early Diagnosis
;
*Echocardiography
;
Female
;
Humans
;
Male
;
Muscular Dystrophy, Duchenne/*complications/*diagnostic imaging
;
Predictive Value of Tests

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