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1.
J Assist Reprod Genet ; 38(4): 965-978, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33538981

ABSTRACT

PURPOSE: To identify the disease-causing genes of Chinese Han women with idiopathic premature ovarian insufficiency (POI). METHODS: Seventy-four Chinese Han women with idiopathic POI were collected to analyze the genetic etiology. Triplet repeat-primed polymerase chain reaction (TP-PCR) was performed to screen the FMR1 (CGG)n premutation, and then 60 POI-related genes were sequenced by targeted next-generation sequencing (NGS) in POI patients with normal FMR1. RESULTS: A total of one patient (1/74) with FMR1 premutation was identified. Targeted NGS revealed that 15.07% (11/73) patients had pathogenic or likely pathogenic variants of Mendelian genes (FOXL2, EIF2B2, CYP17A1, CLPP, MCM9, GDF9, MSH5, ERCC6, POLG). Ten novel variants in six Mendelian genes were identified, such as CLPP c.355A>C (p.I119L) and c.688A>C (p.M230L), MCM9 c.1157C>T (p.T386M) and c.1291A>G (p.M431V), GDF9 c. 238C>T (p.Q80X), MSH5 c.604G>C (p.G202R) and c.2063T>C (p.I688T), ERCC6 c.C1769C>T (p.P590L), POLG c.2832G>C (p.E944D), and c.2821A>G (p.I941V). CONCLUSION: This study suggested targeted NGS was an efficient etiologic test for idiopathic POI patients without FMR1 premutation and enriched the variant spectrum of POI-related genes.


Subject(s)
Fragile X Mental Retardation Protein/genetics , Genetic Testing , Primary Ovarian Insufficiency/genetics , Adult , Alleles , Cell Cycle Proteins/genetics , China/epidemiology , DNA Helicases/genetics , DNA Polymerase gamma/genetics , DNA Repair Enzymes/genetics , Endopeptidase Clp/genetics , Female , Forkhead Box Protein L2/genetics , Growth Differentiation Factor 9/genetics , High-Throughput Nucleotide Sequencing , Humans , Minichromosome Maintenance Proteins/genetics , Poly-ADP-Ribose Binding Proteins/genetics , Primary Ovarian Insufficiency/diagnosis , Primary Ovarian Insufficiency/epidemiology , Primary Ovarian Insufficiency/pathology , Steroid 17-alpha-Hydroxylase/genetics
2.
Mol Cytogenet ; 9: 7, 2016.
Article in English | MEDLINE | ID: mdl-26819630

ABSTRACT

BACKGROUND: About 10 -15 % of all clinically recognized pregnancies result in spontaneous miscarriages, and chromosomal abnormalities are the most common reason. The conventional karyotyping on chorionic villus samples (CVSs) is limited by cell culture and its resolution. This study aimed at evaluating the efficiency of the application of high throughput genetic technology, including array comparative genomic hybridization (array CGH) and next generation sequencing (NGS) on the chromosomal copy number analysis of CVSs from early spontaneous miscarriages. RESULTS: Four hundred and thirty-six CVSs from early spontaneous abortion were collected. Genomic DNA was extracted using a routine method, and the chromosomal copy number variants (CNVs) were analyzed by array CGH and NGS. Two hundred and twenty-five samples (51.6 %) with abnormal chromosomes were identified among 436 samples, of which 188 samples (41.3 %) were aneuploidy, 23 samples (5.3 %) were segmental deletion and/or duplication cases, and 14 samples (3.2 %) were triploid. Two of the three cases with small segmental deletion and duplication were validated to be transferred from their fathers who were carriers of submicroscopic reciprocal translocation. CONCLUSION: A high chromosomal abnormality detection rate on CVSs from early spontaneous miscarriage was achieved by array CGH and NGS. Specifically, the detection of submicroscopic recombination, which is sometimes missed by conventional karyotyping, was important for genetic counseling for the couples that suffered from recurrent miscarriages.

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