1.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*
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Hydrocephalus
;
Oxidoreductases
3.Research progress on renal calculus associate with inborn error of metabolism.
Yuanming SONG ; Changyong ZHAO ; Daobing LI
Journal of Zhejiang University. Medical sciences 2023;52(2):169-177
Renal calculus is a common disease with complex etiology and high recurrence rate. Recent studies have revealed that gene mutations may lead to metabolic defects which are associated with the formation of renal calculus, and single gene mutation is involved in relative high proportion of renal calculus. Gene mutations cause changes in enzyme function, metabolic pathway, ion transport, and receptor sensitivity, causing defects in oxalic acid metabolism, cystine metabolism, calcium ion metabolism, or purine metabolism, which may lead to the formation of renal calculus. The hereditary conditions associated with renal calculus include primary hyperoxaluria, cystinuria, Dent disease, familial hypomagnesemia with hypercalciuria and nephrocalcinosis, Bartter syndrome, primary distal renal tubular acidosis, infant hypercalcemia, hereditary hypophosphatemic rickets with hypercalciuria, adenine phosphoribosyltransferase deficiency, hypoxanthine-guanine phosphoribosyltransferase deficiency, and hereditary xanthinuria. This article reviews the research progress on renal calculus associated with inborn error of metabolism, to provide reference for early screening, diagnosis, treatment, prevention and recurrence of renal calculus.
Infant
;
Humans
;
Hypercalciuria/genetics*
;
Kidney Calculi/genetics*
;
Urolithiasis/genetics*
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Nephrocalcinosis/genetics*
;
Metabolism, Inborn Errors/genetics*
4.CPT2 gene mutation analysis and prenatal diagnosis in a family with carnitine palmitoyltransferase II deficiency.
Jian-Qiang TAN ; Da-Yu CHEN ; Wu-Gao LI ; Zhe-Tao LI ; Ji-Wei HUANG ; Ti-Zhen YAN ; Ren CAI
Chinese Journal of Contemporary Pediatrics 2016;18(12):1282-1285
This study aimed to identify the type of carnitine palmitoyltransferase 2 (CPT2) gene mutation in the child with carnitine palmitoyltransferase II (CPT II) deficiency and her parents and to provide the genetic counseling and prenatal diagnosis for the family members. As the proband, a 3-month-old female baby was admitted to the hospital due to fever which had lasted for 8 hours. Tandem mass spectrometric analysis for blood showed an elevated plasma level of acylcarnitine, which suggested CPT II deficiency. The genomic DNA was extracted from peripheral blood of the patient and her parents. Five exon coding regions and some intron regions at the exon/intron boundaries of the CPT2 gene were analyzed by PCR and Sanger sequencing. Amniotic fluid was taken from the mother during the second trimester, and DNA was extracted to analyze the type of CPT2 gene mutation. Sanger sequencing results showed that two mutations were identified in the CPT2 gene of the proband: c.886C>T (p.R296X) and c.1148T>A (p.F383Y), which were inherited from the parents; the second child of the mother inherited the mutation of c.886C>T (p.R296X) and showed normal acylcarnitine spectrum and normal development after birth. It is concluded that the analysis of CPT2 gene mutations in the family suggested that the proband died of CPT II deficiency and that the identification of the mutations was helpful in prenatal diagnosis in the second pregnancy.
Carnitine O-Palmitoyltransferase
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deficiency
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genetics
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Female
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Humans
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Infant
;
Metabolism, Inborn Errors
;
diagnosis
;
genetics
;
Mutation
;
Prenatal Diagnosis
5.Clinical and genetic analysis of an infant with 3-methylglutaconic aciduria type VII.
Kaihui ZHANG ; Yan HUANG ; Yuqiang LYU ; Min GAO ; Jian MA ; Zhongtao GAI ; Yi LIU
Chinese Journal of Medical Genetics 2020;37(4):423-426
OBJECTIVE:
To analyze the clinical and genetic characteristics of an infant girl featuring comprehensive developmental backwardness.
METHODS:
The patient was subjected to clinical examination, gas chromatography mass spectrometry and next-generation sequencing (NGS).
RESULTS:
The child was insensitive to sound, could not turn over, raise head, laugh or recognize his mother. Laboratory tests were all normal, but metabolic analysis suggested 3-methylglutaconic aciduria due to elevated 3-methylglutaconic acid and 3-methylglutaric acid. NGS has detected two compound heterozygous CLPB variants in the child, namely c.1085G>A and c.1700A>C, which were respectively inherited from her father and mother. Bioinformatic analysis predicted both variants to be pathogenic. The patient was diagnosed with 3-methylglutaconic aciduria type VII (MGCA7).
CONCLUSION
The MGCA7 in the child was probably caused by CLPB gene variants. NGS has provided a powerful diagnostic tool for this rare disorder.
Endopeptidase Clp
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genetics
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Female
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Genetic Testing
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High-Throughput Nucleotide Sequencing
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Humans
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Infant
;
Metabolism, Inborn Errors
;
genetics
6.Current understanding and progress of research on isovaleric acidemia.
Yunfei ZHAO ; Shasha ZHU ; Xinwen HUANG
Chinese Journal of Medical Genetics 2022;39(1):99-102
Isovaleric acidemia is a type of organic acidemia for which the earliest definite diagnosis was attained. It features an autosomal recessive inheritance, with the onset of age varying from newborn to adulthood. The clinical manifestations are complex and variable, which include feeding difficulty, vomiting, lethargy, coma, metabolic acidosis, sweaty feet odor and mental retardation. The mortality and mobility rates of isovaleric acidemia are quite high, and early diagnosis and rational treatment can significantly improve the prognosis. This article has provided a summary for the current understanding and research progress on isovaleric acidemia.
Adult
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Amino Acid Metabolism, Inborn Errors/genetics*
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Humans
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Infant, Newborn
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Isovaleryl-CoA Dehydrogenase/genetics*
7.Analysis of gene variant in an infant with succinic semialdehyde dehydrogenase deficiency.
Dandan YAN ; Xiaowei XU ; Xuetao WANG ; Xinjie ZHANG ; Xiufang ZHI ; Hong WANG ; Yuqing ZHANG ; Jianbo SHU
Chinese Journal of Medical Genetics 2022;39(2):216-221
OBJECTIVE:
To explore the genetic basis for a child with succinate semialdehyde dehydrogenase deficiency.
METHODS:
Peripheral blood samples of the proband and his parents were collected and subjected to Sanger sequencing. High-throughput sequencing was used to verify the gene variants. Bioinformatic software was used to analyze the pathogenicity of the variant sites.
RESULTS:
Sanger sequencing showed that the proband carried a homozygous c.1529C>T (p.S510F) variant of the ALDH5A1 gene, for which his mother was a carrier. The same variant was not detected in his father. However, high-throughput sequencing revealed that the child and his father both had a deletion of ALDH5A1 gene fragment (chr6: 24 403 265-24 566 986).
CONCLUSION
The c.1529C>T variant of the ALDH5A1 gene and deletion of ALDH5A1 gene fragment probably underlay the disease in the child. High-throughput sequencing can detect site variation as well as deletion of gene fragment, which has enabled genetic diagnosis and counseling for the family.
Amino Acid Metabolism, Inborn Errors/genetics*
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Child
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Developmental Disabilities
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Humans
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Infant
;
Mutation
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Succinate-Semialdehyde Dehydrogenase/genetics*
8.Genetic analysis of 21 cases of methylmalonic acidemia.
Xing WANG ; Xiaohong SUN ; Shengju HAO ; Furong LIU ; Qinghua ZHANG ; Lei ZHENG ; Chuan ZHANG
Chinese Journal of Medical Genetics 2022;39(4):362-365
OBJECTIVE:
To carry out genetic analysis for 21 patients with methylmalonic acidemia (MMA) and provide genetic counseling for their families.
METHODS:
Next generation sequencing (panel) was used to detect the pathogenic variants underlying the disease.
RESULTS:
In total 29 variant sites of MMUT, MMAA, MMUT were identified in the 21 patients, with common variants including c.323G>A (10%), c.917C>T (10%), c.984delC (10%) of MMUT gene, and c.609G>A (45%), c.80A>G (10%) , c.567dupT (10%) of MMACHC gene. Among these, c.2000A>G of MMUT, c.298G>T of MMACHC and c.734-7A>G of MMAA gene were unreported previously.
CONCLUSION
Genetic testing for MMA patients can clarify the cause of the disease and provide a basis for the clinical diagnosis. Discovery of novel variants has enriched the mutational spectrum of MMA.
Amino Acid Metabolism, Inborn Errors/genetics*
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Genetic Testing
;
High-Throughput Nucleotide Sequencing
;
Humans
;
Mutation
;
Oxidoreductases/genetics*
9.Hyperprolinemia type Ⅰ caused by PRODH gene variation: 2 cases report and literature review.
Zhen Hua XIE ; Xian LI ; Meng Jun XIAO ; Jing LIU ; Qiang ZHANG ; Zhen Kun ZHANG ; Yan Ling YANG ; Hai Jun WANG ; Yong Xing CHEN ; Yao Dong ZHANG ; Dong Xiao LI
Chinese Journal of Pediatrics 2023;61(10):935-937
10.Analysis of clinical characteristics and ACADM gene variants in four children with Medium chain acyl-CoA dehydrogenase deficiency.
Mengjun XIAO ; Zhenhua XIE ; Jing LIU ; Xian LI ; Qiang ZHANG ; Zhenkun ZHANG ; Dongxiao LI
Chinese Journal of Medical Genetics 2023;40(7):787-794
OBJECTIVE:
To explore the clinical and genetic characteristics of four patients with medium-chain acyl-CoA dehydrogenase deficiency (MCADD).
METHODS:
Four children who had presented at the Children's Hospital Affiliated to Zhengzhou University between August 2019 and August 2021 were selected as the study subjects. Clinical data of the children were collected. The children were subjected to whole exome sequencing (WES).
RESULTS:
All of the four children were diagnosed with MCADD. Blood amino acid and ester acyl carnitine spectrum test showed that the concentration of octanoyl carnitine (C8) was significantly increased. The main clinical manifestations included poor mental response (3 cases), intermittent diarrhea with abdominal pain (1 case), vomiting (1 case), increased transaminase (3 cases), and metabolic acidosis (2 cases). Five variants were identified by genetic testing, among which c.341A>G (p.Y114C) was unreported previously. Three were missense variants, one was frameshift variant and one was splicing variant.
CONCLUSION
The clinical heterogeneity of MCADD is obvious, and the severity of the disease may vary. WES can assist with the diagnosis. Delineation of the clinical symptoms and genetic characteristics of the disease can facilitate early diagnosis and treatment of the disease.
Child
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Humans
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Acyl-CoA Dehydrogenase/genetics*
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Carnitine
;
Genetic Testing
;
Lipid Metabolism, Inborn Errors/genetics*
;
Neonatal Screening