1.Genetic analysis of a child with Dias-Logan syndrome due to variant of BCL11A gene
Linfei LI ; Shuying LUO ; Yaodong ZHANG ; Qing SHANG ; Wancun ZHANG ; Lei LIU ; Xiaoman ZHANG ; Shiyue MEI
Chinese Journal of Medical Genetics 2024;41(9):1096-1099
Objective:To analyze the clinical and genetic characteristics of a child featuring Dias-Logan syndrome.Methods:A child with speech disorders and delayed psychomotor development from childhood who was admitted to the Rehabilitation Medicine Department of Children′s Hospital Affiliated to Zhengzhou University in July 2022 was selected as the research subject. Clinical data of the child was collected. Genomic DNA was extracted from peripheral blood samples of the child and his parents. Potential variant was screened by whole exome sequencing, and candidate variant was verified by Sanger sequencing. This study was approved by the Children′s Hospital Affiliated to Zhengzhou University (Ethics No. 2023-K-011).Results:The child has presented with global developmental delay, microcephaly, special facial features and behavioral problems. Genetic testing revealed a de novo variant of the BCL11A gene, namely c. 561_567delACACGCA(p.Q187fs*7), which was classified as pathogenic (PVS1+ PS2+ PM2_Supporting). Conclusion:The heterozygous variant of BCL11A gene probably underlay the Dias-Logan syndrome in this child. Above finding has enriched the phenotypic and mutational spectrum of the BCL11A gene and provides a basis for genetic counseling and clinical decision-making.
2.Comprehensive diagnosis and genetic analysis of two children with ring chromosome 18
Zhe DING ; Shiyue MEI ; Bo ZHANG ; Jinghui KONG ; Lei LIU ; Zhenhua ZHANG ; Chaojie WANG ; Yaodong ZHANG
Chinese Journal of Medical Genetics 2024;41(9):1110-1116
Objective:To clarify the genetic diagnosis of two children with ring chromosome 18 and explore their mechanisms and clinical phenotypes.Methods:Two patients treated at the Children′s Hospital of Henan Province respectively in June 2022 and March 2023 were selected as the study subjects. Genetic testing and diagnosis were carried out through copy number variation sequencing (CNV-seq), G-banded chromosomal karyotyping, and whole exome sequencing (WES). This study was approved by the Children′s Hospital of Henan Province (Ethics No. 2023-K-075).Results:Child 1 had mainly manifested developmental delay, white matter hypoplasia, type 1 diabetes mellitus, and micropenis. He was found to have a chromosomal karyotype of 46, XY, r(18)(p11.21q22.1)[40]/46, XY[7], and CNV-seq results showed that he has a 14.86 Mb deletion at 18p11.21p11.32 and a 14.02 Mb deletion at 18q22.1q23. Child 2 had peculiar facial features, delayed white matter myelination, developmental delay, atrial septal defect, severe sensorineural deafness, and congenital laryngeal stridor. He was found to have a chromosomal karyotype of 46, XY, r(18)(p11.2q23). CNV-seq result proved that he had a 14.86 Mb deletion at 18p11.21p11.32 and a 20.74 Mb deletion at 18q21.32q23. WES has failed to detect single nucleotide variants (SNVs) in either child, but revealed a large segmental deletion at chromosome 18 in both of them.Conclusion:Both children were diagnosed with ring chromosome 18 syndrome. The different size of the deletional fragments in the 18q region and mosaicism of ring chromosome 18 in child 1 may underlay the variation in their clinical phenotypes. The type 1 diabetes mellitus and micropenis noted in both children are novel features for ring chromosome 18 syndrome.
3.Strategies and Recommendations for the Development of Clinical Machine Learning Predictive Models
Zhengyao HOU ; Jinqi LI ; Yong YANG ; Mengting LI ; Hao SHEN ; Huan CHANG ; Xinyu LIU ; Bo DENG ; Guangjie GAO ; Yalin WEN ; Shiyue LIANG ; Yanqiu YU ; Shundong LEI ; Xingwei WU
Herald of Medicine 2024;43(12):2048-2056
Objective To propose strategies for developing clinical predictive models,aiming to assist researchers in conducting standardized clinical prediction model studies.Methods Literature review was conducted to summarize the operational steps and content for developing clinical predictive models.Then,a methodological framework was summarized and refined through expert consultation.Results The 11-step methodological framework for developing clinical predictive models was obtained by synthesizing the experience of 456 clinical predictive modeling studies and expert consultation,and the details were analyzed and elaborated.Conclusions This study presents methodological strategies and recommendations for the development of clinical predictive models,intended to serve as a guide for researchers.
4.Clinical and genetic analysis of neurodevelopmental disorders characterized by thickened corpus callosum caused by MAST1 gene mutation
Yanhong WANG ; Lei LIU ; Xiaoge FAN ; Xuan ZHENG ; Zhi LEI ; Linfei LI ; Lixin SONG ; Yongtao DUAN ; Shiyue MEI
Chinese Journal of Neurology 2024;57(5):460-466
Objective:To investigate the clinical and genetic features of the patient with neurodevelopmental disorders characterized by thickened corpus callosum caused by MAST1 gene mutation. Methods:Clinical data and auxiliary examination of a child with neurodevelopmental disorders caused by MAST1 gene mutation who was admitted to Henan Children′s Hospital in September 2022 were collected, and whole exome sequencing technology was applied to analyze the genetics of the child. Results:The patient was a 2 years and 8 months old male, with a clinical phenotype including intellectual, motor, and speech development disorders. Brain magnetic resonance imaging (MRI) showed thickened corpus callosum, nodular heterotopia of the left ventricle body.Whole exome sequencing showed the MAST1 gene with c.578T>G(p.Met193Arg) heterozygous missense variant, which was a unreported de novo pathogenic variant and both of his parents were wild-type. Conclusions:Diseases caused by MAST1 gene mutations are relatively rare, the main clinical features are neurodevelopmental disorders and brain structural abnormalities, and MRI shows an enlarged corpus callosum.The heterozygous missense variant c.578T>G(p.Met193Arg) of the MAST1 gene is the genetic cause of this case.
5.Analysis of clinical phenotypes and MMACHC gene variants in 65 children with Methylmalonic acidemia and homocysteinemia.
Chongfen CHEN ; Yaodong ZHANG ; Lili GE ; Lei LIU ; Xiaoman ZHANG ; Shiyue MEI ; Shuying LUO
Chinese Journal of Medical Genetics 2023;40(9):1086-1092
OBJECTIVE:
To carry out Sanger sequencing for MMACHC gene variants among 65 Chinese pedigrees affected with combined methylmalonic aciduria and homocysteinemia, and summarize their genetic and clinical characteristics and prognosis.
METHODS:
Clinical characteristics of the 65 children identified with Methylmalonic acidemia and homocysteinemia at the Children's Hospital Affiliated to Zhengzhou University (Zhengzhou Children's Hospital) from April 2017 to April 2022 were selected as the study subjects. Potential variants of the MMACHC gene were detected by direct sequencing of the PCR products.
RESULTS:
The median age of the 65 children was 3 months (14 days to 17 years old). These included 28 cases (43.08%) from neonatal screening, 11 cases (16.92%) with a history of jaundice, and 9 cases (13.85%) with various degrees of anemia. The main clinical symptoms included development delay, slow growth, epilepsy, hydrocephalus, lethargy, feeding difficulty, regression or decline in motor ability, recurrent respiratory infections, anemia, jaundice, respiratory and heart failures, hydrocephalus, limb weakness, and hypertension. Blood and urine tandem mass spectrometry screening has revealed increase of methylmalonic acid, propionyl carnitine, propionyl carnitine/acetylcarnitine ratio, and propionyl carnitine/free carnitine ratio to various extents, and blood homocysteine was increased in all patients. The detection rate of genetic variants was 98.46% (128/130), and in total 22 types of MMACHC gene variants were detected. The most common ones have included c.609G>A (W203X) (58/128), c.658-660del (K220del) (19/128), and c.80A>G (Q27A) (16/128). Two novel variants have been identified, namely c.565C>T (p.R189C) and c.624_ 625delTG (p.A208Afs), which were respectively predicted as likely pathogenic (PM2_Supporting+PM3+PP2+PP3) and pathogenic (PVS1+PM2_Supporting+PM3+PP2) based on the guidelines from the American College of Medical Genetics and Genomics (ACMG). Exon 4 had the highest frequency for the detection.
CONCLUSION
Identification of MMACHC gene variants has confirmed the diagnosis in the children, among which the c.609G>A variant has the highest frequency. Discovery of the new variants has enriched the mutational spectrum of the MMACHC gene.
Humans
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Amino Acid Metabolism, Inborn Errors/genetics*
;
Hydrocephalus
;
Oxidoreductases
6.Analysis of CLCN4 gene variant in a child with Raynaud-Claes syndrome.
Linfei LI ; Shuying LUO ; Shiyue MEI ; Qing SHANG ; Wancun ZHANG ; Xiaoman ZHANG ; Lei LIU ; Zhi LEI ; Yaodong ZHANG
Chinese Journal of Medical Genetics 2023;40(10):1280-1283
OBJECTIVE:
To analyze the clinical phenotype and genetic variant in a child with Raynaud-Claes syndrome (RCS).
METHODS:
A child who was diagnosed with RCS at the Children's Hospital Affiliated to Zhengzhou University for delayed language and motor development in August 2022 was selected as the study subject. Clinical data of the child were collected, and potential genetic variant was detected by next-generation sequencing and Sanger sequencing. The pathogenicity of the candidate variant was analyzed.
RESULTS:
The child, a 4-year-and-4-month-old male, has manifested global developmental delay, speech disorders, special facial features and behavioral abnormalities. Genetic testing revealed that he has harbored a hemizygous c.1174C>T (p.Gln392Ter) variant of the CLCN4 gene, which was not detected in either of his parents. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the variant was rated as pathogenic (PVS1+PS2+PM2_Supporting).
CONCLUSION
The c.1174C>T (p.Gln392Ter) variant of the CLCN4 gene probably underlay the PCS in this child. Above finding has expanded the mutational spectrum of the CLCN4 gene and enabled genetic counseling and prenatal diagnosis for his family.
Female
;
Humans
;
Male
;
Pregnancy
;
Chloride Channels/genetics*
;
Genetic Counseling
;
Genetic Testing
;
Genomics
;
High-Throughput Nucleotide Sequencing
;
Mutation
;
Child, Preschool
7.Clinical characteristics and genetic analysis of two children with Tuberous sclerosis complex.
Linfei LI ; Shuying LUO ; Yaodong ZHANG ; Qing SHANG ; Wancun ZHANG ; Xiaoman ZHANG ; Lei LIU ; Shiyue MEI
Chinese Journal of Medical Genetics 2023;40(12):1521-1525
OBJECTIVE:
To explore the clinical characteristics and genetic variants in two children with Tuberous sclerosis complex (TSC).
METHODS:
Two children who had presented at the Children's Hospital Affiliated to Zhengzhou University respectively in June 2020 and July 2021 were selected as the study subjects. Clinical data of the children were collected, and potential pathogenic variants were screened by whole exome sequencing (WES). Candidate variants were verified by Sanger sequencing of their family members.
RESULTS:
Child 1 was a 7-month-and-29-day-old male, and child 2 was a 2-year-and-6-month-old male. Both children had shown symptoms of epileptic seizures and multiple hypomelanotic macules. Genetic testing revealed that both children had harbored de novo variants of the TSC2 gene, namely c.3239_3240insA and c.3330delC, which were unreported previously. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), both variants were rated as pathogenic (PVS1+PS2+PM2_Supporting).
CONCLUSION
This study has uncovered the genetic etiology for two children with TSC. Above findings have also enriched the phenotypic and mutational spectrum of TSC in the Chinese population.
Humans
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Infant
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Male
;
Family
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Genetic Testing
;
Genomics
;
Mutation
;
Tuberous Sclerosis/genetics*
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Child, Preschool
;
East Asian People
8.Clinical and genetic analysis of children with developmental and epileptic encephalopathy 8 caused by ARHGEF9 gene variants
Zhi LEI ; Xuan ZHENG ; Lei LIU ; Zhipeng JIN ; Wenhui NING ; Daoqi MEI ; Pengbo GUO ; Yanhong WANG ; Yaodong ZHANG ; Shiyue MEI
Chinese Journal of Neurology 2023;56(3):305-312
Objective:To analyze the clinical characteristics and genetic variation of 2 children with developmental and epileptic encephalopathy 8 (DEE8).Methods:Whole-exome sequencing (WES) was performed to determine the potential variants in the probands. Candidate variants identified by WES were validated by Sanger sequencing and quantitative real-time polymerase chain reaction. X chromosome inactivation (XCI) detection was performed in the proband 1′s mother and proband 2 to detect the allelic expression difference of ARHGEF9. Results:Both of the cases showed global developmental delay. Proband 1 presented with delayed motor and speech development, intellectual disability, and seizures. Electroencephalography of proband 1 showed slow background activity, with spikes, spike and waves in bilateral frontal and midline regions during sleep. While proband 2 showed delay in acquisition of language, motor skills, and cognition, but no seizures. It was identified that proband 1 carried a novel maternally derived heterozygous splicing variant (c.925-2A>T) in ARHGEF9 by WES, which was verified in Sanger sequencing. The XCI in proband 1′s mother was observed, and the expression ratio of mutant ARHGEF9 and wild-type was 0∶100%. A novel exon 3-10 heterozygous deletion of ARHGEF9 was identified in proband 2, and this variant was not found in his unaffected parents. Conclusions:DEE8 disorders are relatively rare. Most of the patients have varying degrees of neurodevelopmental phenotype, but epilepsy is not a specific clinical manifestation. ARHGEF9 gene deletion and splicing variation may be the genetic cause of the 2 probands, and above findings have enriched the spectrum of variation and phenotype of DEE8.
9.Analysis of clinical and genetic variation in neonatal intrahepatic cholestasis caused by citrin deficiency
Lili GE ; Chongfen CHEN ; Lei LIU ; Xuan ZHENG ; Xiaoman ZHANG ; Yaodong ZHANG ; Shiyue MEI
Chinese Journal of Hepatology 2023;31(10):1081-1086
Objective:To investigate the clinical phenotype and gene variation conditions in neonatal intrahepatic cholestasis caused by citrin deficiency (NICCD), so as to provide a basis for genetic counseling and clinical diagnosis and treatment of the family.Methods:11 cases of neonatal intrahepatic cholestasis who visited the Children's Hospital Affiliated to Zhengzhou University between February 2019 and March 2021 were selected as the study subjects. High-throughput sequencing technology was used to detect the gene variation condition in 11 neonatal patients and 100 normal control neonates. The suspicious loci and family members were verified by Sanger sequencing and QPCR technology.Results:All 11 children with NICCD had different degrees of jaundice and liver damage symptoms, combined with coagulation dysfunction and anemia ( n = 7), cardiac malformation ( n = 2), elevated myocardial enzymes ( n = 4), hyperlipidemia ( n = 1), hyperkalemia ( n = 1), persistent diarrhea ( n = 3), developmental delay ( n = 1). A total of 10 different types of SLC25A13 gene mutations were detected in 11 cases, including three frameshift mutations, two splicing changes, two missense mutations, one intron insertion, one nonsense mutation, and one heterozygous deletion. After reviewing literature and databases, c.1878delG(p.I627Sfs*73) and exon11 deletion were novel mutations that had not been reported at home or abroad. Conclusion:The clinical features of NICCD are non-specific, and genetic testing aids in the early and accurate diagnosis of the disease, providing an important basis for clinical treatment and genetic counseling for family members. In addition, the detection of novel mutation sites has enriched the SLC25A13 gene variation spectrum.
10.Clinical characteristics and genetic analysis of a Chinese pedigree affected with mitochondrial DNA depletion syndrome due to compound heterozygous variants of RRM2B gene.
Yanhong WANG ; Xuan ZHENG ; Xiangdie WANG ; Xiaoman ZHANG ; Pengbo GUO ; Lei LIU ; Shiyue MEI
Chinese Journal of Medical Genetics 2022;39(1):26-30
OBJECTIVE:
To analyze the clinical characteristics and pathogenic gene in a Chinese pedigree affected with mitochondrial DNA depletion syndrome 8A (MTDPS8A).
METHODS:
Whole exome sequencing was carried out for the patient. Sanger sequencing was used to verify the results, and PolyPhen-2 and PROVEAN software were used to predict the impact of amino acid changes on the function of the protein.
RESULTS:
The patient, a two-month-old female, was admitted to the hospital for poor milk intake and poor mental response. Her clinical manifestations included feeding difficulty, shortness of breath and low muscle tone. Auxiliary laboratory test indicated that the infant was underdeveloped with abnormal liver, kidney, and heart functions accompanied by hyperlacticacidemia. She responded poorly to treatment and eventually died. Sequencing revealed that the child has carried compound heterozygous missense variants of the RRM2B gene, namely c.16delA (p.R6Gfs*22) and c.175G>C (p.A59P), which were respectively inherited from her father and mother, and both were newly discovered pathologic variants.
CONCLUSION
The c.16delA and c.175G>C compound heterozygous variants of the RRM2B gene probably underlay the pathogenesis of MTDPS8A. Above finding has strengthened the understanding of the clinical feature and genetic etiology of this disease and expanded the mutation spectrum of the RRM2B gene.
Cell Cycle Proteins
;
Child
;
China
;
DNA, Mitochondrial/genetics*
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Female
;
Genetic Testing
;
Humans
;
Infant
;
Mutation
;
Pedigree
;
Ribonucleotide Reductases
;
Whole Exome Sequencing

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