1.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
;
Humans
;
Acyl-CoA Dehydrogenase/genetics*
;
Carnitine
;
Genetic Testing
;
Lipid Metabolism, Inborn Errors/genetics*
;
Neonatal Screening
2.Analysis of genotypes and biochemical phenotypes of neonates with abnormal metabolism of butyrylcarnitine.
Dingwen WU ; Rulai YANG ; Kexin FANG ; Chen LIU ; Jiaming TANG ; Meijun YU ; Zhengyan ZHAO
Journal of Zhejiang University. Medical sciences 2023;52(6):707-713
OBJECTIVES:
To investigate the genotypes and biochemical phenotypes of neonates with abnormal metabolism of butyrylcarnitine (C4).
METHODS:
One hundred and twenty neonates with increased C4 levels detected by tandem mass spectrometry in the neonatal screening at Children's Hospital, Zhejiang University School of Medicine from January 2018 to June 2023 were included. The initial screening data and recalled data of C4 and C4/C3 were collected and converted into multiples of C4 reference range. Next generation sequencing was performed and the exons with adjacent 50 bp regions of ACAD8 and ACADS genes were captured by liquid phase capture technique. Variant information was obtained by bioinformatic analysis and the pathogenicity were classified according to the American College of Medical Genetics and Genomics criteria. The Wilcoxon rank sum test was used to analyze the differences in C4 levels among neonates with different variation types.
RESULTS:
In total, 32 variants in ACAD8 gene were detected, of which 7 variants were reported for the first time; while 41 variants of ACADS gene were detected, of which 17 variants have not been previously reported. There were 39 cases with ACAD8 biallelic variations and 3 cases with ACAD8 monoallelic variations; 34 cases with ACADS biallelic variations and 36 cases with ACADS monoallelic variations. Furthermore, 5 cases were detected with both ACAD8 and ACADS gene variations. Inter group comparison showed that the multiples of C4 reference range in initial screening and re-examination of the ACAD8 biallelic variations and ACADS biallelic variations groups were significantly higher than those of the ACADS monoallelic variations group (all P<0.01), while the multiples in the ACAD8 biallelic variations group were significantly higher than those in the ACADS biallelic variations group (all P<0.01). The multiples of C4 reference range in the initial screening greater than 1.5 times were observed in all neonates carrying ACAD8 or ACADS biallelic variations, while only 25% (9/36) in neonates carrying ACADS monoallelic variations.
CONCLUSIONS
ACAD8 and/or ACADS gene variants are the main genetic causes for elevated C4 in newborns in Zhejiang region with high genotypic heterogeneity. The C4 levels of neonates with biallelic variations are significantly higher than those of neonates with monoallelic variations. The cut-off value for C4 level could be modestly elevated, which could reduce the false positive rate in tandem mass spectrometry neonatal screening.
Child
;
Humans
;
Infant, Newborn
;
Acyl-CoA Dehydrogenase/genetics*
;
Genotype
;
Phenotype
;
Carnitine/metabolism*
;
Mutation
3.Epididymal sperm protein P34H and male reproduction.
Xin-Yi XIA ; Yu-Feng HUANG ; Xiao-Feng XU
National Journal of Andrology 2002;8(5):356-362
During epididymal transit, mammalian spermatozoa acquire new surface proteins that are necessary for gamete interaction. P34H, a member of the short-chain dehydrogenase/reductase(SDR) superfamily, is acquired on the acrosomal cap of human spermatozoon during its maturation arising within epididymis. P34H has been shown to be involved in sperm-zona pellucida interaction. Research revealed that the occurrence of low concentration of sperm protein P34H were significant amongst the idiopathic infertile male population and P34H protein could also be considered as a marker of epididymal sperm maturation in human. Therefore the level of sperm protein P34H is proposed to be a auxiliary diagnostic tool for male infertility. This paper reviews the molecular properties and regulation of the expression of P34H and its association with male reproduction.
Acyl-CoA Dehydrogenase
;
Fatty Acid Desaturases
;
chemistry
;
Gene Expression
;
Humans
;
Male
;
Proteins
;
genetics
;
physiology
;
Sperm Maturation
;
physiology
;
Sugar Alcohol Dehydrogenases
4.Tandem mass spectrometry and genetic variant analysis of four neonates with very long chain acyl-coenzyme A dehydrogenase deficiency.
Dongyang HONG ; Yanyun WANG ; Yun SUN ; Dingyuan MA ; Zhilei ZHANG ; Wei CHENG ; Tao JIANG
Chinese Journal of Medical Genetics 2022;39(3):276-281
OBJECTIVE:
To analyze the clinical features and genetic variants in four neonates with very long chain acyl-coenzyme A dehydrogenase (VLCAD) deficiency.
METHODS:
Neonates with a tetradecenoylcarnitine (C14:1) concentration at above 0.4 μmol/L in newborn screening were recalled for re-testing. Four neonates were diagnosed with VLCAD deficiency by MS-MS and genetic testing, and their clinical features and genotypes were analyzed.
RESULTS:
All cases had elevated blood C14:1, and the values of first recalls were all lower than the initial test. In 2 cases, the C14:1 had dropped to the normal range. 1 case has remained at above 1 μmol/L after the reduction, and the remainder one case was slightly decreased. In total eight variants of the ADACVL genes were detected among the four neonates, which included 5 missense variants and 3 novel variants (p.Met344Val, p.Ala416Val, c.1077+6T>A). No neonate showed salient clinical manifestations.
CONCLUSION
Above findings have enriched the spectrum of ADACVL gene mutations and provided a valuable reference for the screening and diagnosis of VLCAD deficiency.
Acyl-CoA Dehydrogenase/genetics*
;
Acyl-CoA Dehydrogenase, Long-Chain
;
Congenital Bone Marrow Failure Syndromes
;
Genetic Testing
;
Humans
;
Infant, Newborn
;
Lipid Metabolism, Inborn Errors
;
Mitochondrial Diseases
;
Muscular Diseases
;
Tandem Mass Spectrometry
5.Analysis of ACADVL gene variations among nine neonates with very long chain acyl-coA dehydrogenase deficiency.
Fan TONG ; Ting CHEN ; Pingping JIANG ; Rulai YANG ; Zhengyan ZHAO ; Qiang SHU
Chinese Journal of Medical Genetics 2019;36(4):310-313
OBJECTIVE:
To explore the clinical features and variations of ACADVL gene in 9 neonates with very long chain acyl-coenzyme A dehydrogenase deficiency (VLCADD).
METHODS:
VLCADD was suspected based on the results of neonatal screening by tandem mass spectrometry (MS-MS), with tetradecenoylcarnitine ± tetradecenoylcarnitine/octanoylcarnitine (C14: 1 ± C14: 1/C8) as the mark indexes. Infants with positive outcome were confirmed by sequencing of the ACADVL gene.
RESULTS:
Among 9 VLCADD cases, one case lost during follow-up, the observed phenotypes comprised 2 with severe early-onset form, 1 with hepatic form and 5 with late-onset form. Optimal outcome was acquired for all patients except the 2 early-onset cases. In total 16 ACADVL variations were detected among the 9 infants, which included 8 novel variations (c.96-105del GCCCGGCCCT, c.541C>T, c.863T>G, c.878+1G>C, c.895A>G, c.1238T>C, c.1276G>A, and c.1505T>A) and 11 missense variations. There were 9 genotypic combinations, including 1 homozygote and 8 compound heterozygotes. Except for two patients carrying null variations, all had a good outcome.
CONCLUSION
VLCADD is relatively rare in southern China, for which late-onset form is common. Carriers of null variations of the ACADVL gene may have relatively poorer clinical outcome. Above results will provide valuable information for the diagnosis and management of VLCADD.
Acyl-CoA Dehydrogenase, Long-Chain
;
deficiency
;
genetics
;
Carnitine
;
China
;
Humans
;
Infant, Newborn
;
Lipid Metabolism, Inborn Errors
;
genetics
;
Mitochondrial Diseases
;
genetics
;
Muscular Diseases
;
genetics
;
Neonatal Screening
6.An analysis of clinical characteristics and gene mutation in two patients with medium- and short-chain acyl-CoA dehydrogenase deficiency.
Jian-Qiang TAN ; Da-Yu CHEN ; Zhe-Tao LI ; Ji-Wei HUANG ; Ti-Zhen YAN ; Ren CAI
Chinese Journal of Contemporary Pediatrics 2016;18(10):1019-1025
Medium- and short-chain acyl-CoA dehydrogenase deficiency is a disorder of fatty acid β-oxidation. Gene mutation prevents medium- and short-chain fatty acids from entry into mitochondria for oxidation, which leads to multiple organ dysfunction. In this study, serum acylcarnitines and the organic acid profile in urea were analyzed in two children whose clinical symptoms were hypoglycemia and metabolic acidosis. Moreover, gene mutations in the two children and their parents were evaluated. One of the patients was a 3-day-old male who was admitted to the hospital due to neonatal asphyxia, sucking weakness, and sleepiness. The serum acylcarnitine profile showed increases in medium-chain acylcarnitines (C6-C10), particularly in C8, which showed a concentration of 3.52 μmol/L (reference value: 0.02-0.2 μmol/L). The analysis of organic acids in urea gave a normal result. Sanger sequencing revealed a reported c.580A>G (p.Asn194Asp) homozygous mutation at exon 7 of the ACADM gene. The other patient was a 3-month-old female who was admitted to the hospital due to cough and recurrent fever for around 10 days. The serum acylcarnitine profile showed an increase in serum C4 level, which was 1.66 μmol/L (reference value: 0.06-0.6 μmol/L). The analysis of organic acids in urea showed an increase in the level of ethyl malonic acid, which was 55.9 (reference value: 0-6.2). Sanger sequencing revealed a reported c.625G>A (p.Gly209Ser) homozygous mutation in the ACADS gene. This study indicates that screening tests for genetic metabolic diseases are recommended for children who have unexplained metabolic acidosis and hypoglycemia. Genetic analyses of the ACADM and ACADS genes are helpful for the diagnosis of medium- and short-chain acyl-CoA dehydrogenase deficiency.
Acyl-CoA Dehydrogenase
;
deficiency
;
genetics
;
Carnitine
;
analogs & derivatives
;
blood
;
Female
;
Humans
;
Infant
;
Infant, Newborn
;
Lipid Metabolism, Inborn Errors
;
genetics
;
Male
;
Mutation
;
Urea
;
analysis
8.Progress of glutaric aciduria type I.
Chinese Journal of Pediatrics 2012;50(12):912-914
Amino Acid Metabolism, Inborn Errors
;
diagnosis
;
genetics
;
therapy
;
Brain
;
diagnostic imaging
;
metabolism
;
pathology
;
Brain Diseases, Metabolic
;
diagnosis
;
genetics
;
therapy
;
Child, Preschool
;
Diagnosis, Differential
;
Glutarates
;
metabolism
;
Glutaryl-CoA Dehydrogenase
;
deficiency
;
genetics
;
Humans
;
Infant
;
Infant, Newborn
;
Lysine
;
metabolism
;
Magnetic Resonance Imaging
;
Multiple Acyl Coenzyme A Dehydrogenase Deficiency
;
diagnosis
;
genetics
;
therapy
;
Mutation
;
Neonatal Screening
;
methods
;
Radiography
9.Clinical features and ACADVL gene mutation spectrum analysis of 11 Chinese patients with very long chain acyl-CoA dehydrogenase deficiency.
Cao JINJUN ; Qiu WENJUAN ; Zhang RUINAN ; Ye JUN ; Han LIANSHU ; Zhang HUIWEN ; Zhang QIGANG ; Gu XUEFAN
Chinese Journal of Pediatrics 2015;53(4):262-267
OBJECTIVETo investigate the clinical and laboratory features of very long chain acyl-CoA dehydrogenase deficiency ( VLCADD ) and the correlations between its genotype and phenotype.
METHODEleven patients diagnosed as VLCADD of Shanghai Jiaotong University School of Medicine seen from September 2006 to May 2014 were included. There were 9 boys and 2 girls, whose age was 2 d-17 years. Analysis was performed on clinical features, routine laboratory examination, and tandem mass spectrometry (MS-MS) , gas chromatography mass spectrometry (GC-MS) and genetic analysis were conducted.
RESULTAll cases had elevated levels of blood tetradecanoylcarnitine (C14:1) recognized as the characteristic biomarker for VLCADD. The eleven patients were classified into three groups: six cases in neonatal onset group, three in infancy onset group form patients and two in late onset group. Neonatal onset patients were characterized by hypoactivity, hypoglycemia shortly after birth. Infancy onset patients presented hepatomegaly and hypoglycemia in infancy. The two adolescent patients showed initial manifestations of exercise intolerance or rhabdomyolysis. Six of the eleven patients died at the age of 2-8 months, including four neonatal onset and two infant onset patients, with one or two null mutations. The other two neonatal onset patients were diagnosed since early birth through neonatal screening and their clinical manifestation are almost normal after treatments. Among 11 patients, seventeen different mutations in the ACADVL gene were identified, with a total mutation detection rate of 95.45% (21/22 alleles), including eleven reported mutations ( p. S22X, p. G43D, p. R511Q, p. W427X, p. A213T, p. C215R, p. G222R, p. R450H, p. R456H, c. 296-297delCA, c. 1605 + 1G > T) and six novel mutations (p. S72F, p. Q100X, p. M437T, p. D466Y, c. 1315delG insAC, IVS7 + 4 A > G). The p. R450H was the most frequent mutation identified in three alleles (13.63%, 3/22 alleles), followed by p. S22X and p. D466Y mutations which were detected in two alleles (9.09%, 2/22 alleles).
CONCLUSIONThe ACADVL gene mutations were heterozygous in our patients. The mortality of neonatal onset form and infant onset form is much higher than the late onset form patients, suggesting a certain correlation between the genotype and phenotype was found. The earlier diagnosis and treatment of VLCADD are of vital importance for the improvement of the prognosis of the patients.
Acyl-CoA Dehydrogenase, Long-Chain ; deficiency ; genetics ; Adolescent ; Age of Onset ; Alleles ; Asian Continental Ancestry Group ; Child ; Child, Preschool ; China ; Female ; Genetic Testing ; Genotype ; Heterozygote ; Humans ; Infant ; Infant, Newborn ; Lipid Metabolism, Inborn Errors ; complications ; genetics ; Male ; Mitochondrial Diseases ; complications ; genetics ; Muscular Diseases ; complications ; genetics ; Mutation ; Neonatal Screening ; Phenotype ; Prognosis ; Rhabdomyolysis ; etiology ; Spectrum Analysis ; Tandem Mass Spectrometry
10.Clinical, Biochemical and Genetic Analyses in Two Korean Patients with Medium-chain Acyl-CoA Dehydrogenase Deficiency.
Hye In WOO ; Hyung Doo PARK ; Yong Wha LEE ; Dong Hwan LEE ; Chang Seok KI ; Soo Youn LEE ; Jong Won KIM
The Korean Journal of Laboratory Medicine 2011;31(1):54-60
Medium-chain acyl-CoA dehydrogenase deficiency (MCADD) is an autosomal recessive hereditary metabolic disorder of mitochondrial fatty acid beta-oxidation. It is characterized by hypoketotic hypoglycemia, hyperammonemia, seizure, coma, and sudden infant death syndrome-like illness. The most frequently isolated mutation in the acyl-CoA dehydrogenase, medium-chain (ACADM) gene of Caucasian patients with MCADD is c.985A>G, but ethnic variations exist in the frequency of this mutation. Here, we describe 2 Korean pediatric cases of MCADD, which was detected during newborn screening by tandem mass spectrometry and confirmed by molecular analysis. The levels of medium-chain acylcarnitines, including octanoylcarnitine (C8), hexanoylcarnitine (C6), and decanoylcarnitine (C10), were typically elevated. Molecular studies revealed that Patient 1 was a compound heterozygote for c.449_452delCTGA (p.Thr150ArgfsX4) and c.461T>G (p.L154W) mutations, and Patient 2 was a compound heterozygote for c.449_452delCTGA (p.Thr150ArgfsX4) and c.1189T>A (p.Y397N) mutations. We detected asymptomatic patients with MCADD by using a newborn screening test and confirmed it by ACADM mutation analysis. This report presents evidence of the biochemical and molecular features of MCADD in Korean patients and, to the best of our knowledge, this is the first report of the c.461T>G mutation in the ACADM gene.
Acyl-CoA Dehydrogenase/chemistry/deficiency/genetics
;
Asian Continental Ancestry Group/*genetics
;
Base Sequence
;
Biological Markers/blood
;
Carnitine/analogs & derivatives/blood
;
DNA Mutational Analysis
;
Exons
;
Female
;
Gene Deletion
;
Heterozygote
;
Humans
;
Infant, Newborn
;
Lipid Metabolism, Inborn Errors/diagnosis/genetics
;
Male
;
Mutation
;
Neonatal Screening
;
Republic of Korea
;
Tandem Mass Spectrometry