Catalogue Search | MBRL
Search Results Heading
Explore the vast range of titles available.
MBRLSearchResults
-
DisciplineDiscipline
-
Is Peer ReviewedIs Peer Reviewed
-
Item TypeItem Type
-
SubjectSubject
-
YearFrom:-To:
-
More FiltersMore FiltersSourceLanguage
Done
Filters
Reset
68
result(s) for
"Multiple Acyl Coenzyme A Dehydrogenase Deficiency - genetics"
Sort by:
A comparative study on riboflavin responsive multiple acyl-CoA dehydrogenation deficiency due to variants in FLAD1 and ETFDH gene
by
Sun, Yuan
,
Yan, Chuanzhu
,
Tang, Shuyao
in
Acyl Coenzyme A - genetics
,
Acyl Coenzyme A - metabolism
,
Acyl Coenzyme A - therapeutic use
2024
Lipid storage myopathy (LSM) is a heterogeneous group of lipid metabolism disorders predominantly affecting skeletal muscle by triglyceride accumulation in muscle fibers. Riboflavin therapy has been shown to ameliorate symptoms in some LSM patients who are essentially concerned with multiple acyl-CoA dehydrogenation deficiency (MADD). It is proved that riboflavin responsive LSM caused by MADD is mainly due to ETFDH gene variant (ETFDH-RRMADD). We described here a case with riboflavin responsive LSM and MADD resulting from FLAD1 gene variants (c.1588 C > T p.Arg530Cys and c.1589 G > C p.Arg530Pro, FLAD1-RRMADD). And we compared our patient together with 9 FLAD1-RRMADD cases from literature to 106 ETFDH-RRMADD cases in our neuromuscular center on clinical history, laboratory investigations and pathological features. Furthermore, the transcriptomics study on FLAD1-RRMADD and ETFDH-RRMADD were carried out. On muscle pathology, both FLAD1-RRMADD and ETFDH-RRMADD were proved with lipid storage myopathy in which atypical ragged red fibers were more frequent in ETFDH-RRMADD, while fibers with faint COX staining were more common in FLAD1-RRMADD. Molecular study revealed that the expression of GDF15 gene in muscle and GDF15 protein in both serum and muscle was significantly increased in FLAD1-RRMADD and ETFDH-RRMADD groups. Our data revealed that FLAD1-RRMADD (p.Arg530) has similar clinical, biochemical, and fatty acid metabolism changes to ETFDH-RRMADD except for muscle pathological features.
Journal Article
The male-to-female ratio in late-onset multiple acyl-CoA dehydrogenase deficiency: a systematic review and meta-analysis
by
Guo, Junhong
,
Ma, Jing
,
Pang, Xiaomin
in
Acyl-CoA dehydrogenase
,
Acyl-CoA Dehydrogenase - genetics
,
Acyl-CoA Dehydrogenase - metabolism
2024
Background
Late-onset multiple acyl-CoA dehydrogenase deficiency (MADD) is the most common lipid storage myopathy. There are sex differences in fat metabolism and it is not known whether late-onset MADD affects men and women equally.
Methods
In this systematic review and meta-analysis, the PubMed, Embase, Web of Science, CNKI, CBM, and Wanfang databases were searched until 01/08/2023. Studies reporting sex distribution in patients with late-onset MADD were included. Two authors independently screened studies for eligibility, extracted data, and assessed risk of bias. Pre-specified outcomes of interest were the male-to-female ratio (MFR) of patients with late-onset MADD, the differences of clinical characteristics between the sexes, and factors influencing the MFR.
Results
Of 3379 identified studies, 34 met inclusion criteria, yielding a total of 609 late-onset MADD patients. The overall pooled percentage of males was 58% (95% CI, 54-63%) with low heterogeneity across studies (
I
2
= 2.99%;
P
= 0.42). The mean onset ages, diagnostic delay, serum creatine kinase (CK), and allelic frequencies of 3 hotspot variants in
ETFDH
gene were similar between male and female patients (
P
> 0.05). Meta-regressions revealed that ethnic group was associated with the MFR in late-onset MADD, and subgroup meta-analyses demonstrated that East-Asian patients had a higher percentage of male, lower CK, and higher proportion of hotspot variants in
ETFDH
gene than non-East-Asian patients (
P
< 0.05).
Conclusions
Male patients with late-onset MADD were more common than female patients. Ethnicity was proved to be a factor influencing the MFR in late-onset MADD. These findings suggest that male sex may be a risk factor for the disease.
Journal Article
Clinical and genetical heterogeneity of late-onset multiple acyl-coenzyme A dehydrogenase deficiency
2014
Background
Multiple acyl-CoA dehydrogenase deficiency (MADD) is an autosomal recessive disorder caused by deficiency of electron transfer flavoprotein or electron transfer flavoprotein dehydrogenase. The clinical picture of late-onset forms is highly variable with symptoms ranging from acute metabolic decompensations to chronic, mainly muscular problems or even asymptomatic cases.
Methods
All 350 cases of late-onset MADD reported in the literature to date have been analyzed and evaluated with respect to age at presentation, diagnostic delay, biochemical features and diagnostic parameters as well as response to treatment.
Results
Mean age at onset was 19.2 years. The mean delay between onset of symptoms and diagnosis was 3.9 years. Chronic muscular symptoms were more than twice as common as acute metabolic decompensations (85% versus 33% of patients, respectively). 20% had both acute and chronic symptoms. 5% of patients had died at a mean age of 5.8 years, while 3% of patients have remained asymptomatic until a maximum age of 14 years. Diagnosis may be difficult as a relevant number of patients do not display typical biochemical patterns of urine organic acids and blood acylcarnitines during times of wellbeing. The vast majority of patients carry mutations in the
ETFDH
gene (93%), while mutations in the
ETFA
(5%) and
ETFB
(2%) genes are the exceptions. Almost all patients with late-onset MADD (98%) are clearly responsive to riboflavin.
Conclusions
Late-onset MADD is probably an underdiagnosed disease and should be considered in all patients with acute or chronic muscular symptoms or acute metabolic decompensation with hypoglycemia, acidosis, encephalopathy and hepatopathy. This may not only prevent patients from invasive diagnostic procedures such as muscle biopsies, but also help to avoid fatal metabolic decompensations.
Journal Article
Efficacy and safety of D,L-3-hydroxybutyrate (D,L-3-HB) treatment in multiple acyl-CoA dehydrogenase deficiency
by
Geraghty, Michael T.
,
Derks, Terry G. J.
,
van Rijt, Willemijn J.
in
3-Hydroxybutyric Acid
,
Acyl-CoA Dehydrogenase - genetics
,
Alternative energy
2020
Purpose
Multiple acyl-CoA dehydrogenase deficiency (MADD) is a life-threatening, ultrarare inborn error of metabolism. Case reports described successful D,L-3-hydroxybutyrate (D,L-3-HB) treatment in severely affected MADD patients, but systematic data on efficacy and safety is lacking.
Methods
A systematic literature review and an international, retrospective cohort study on clinical presentation, D,L-3-HB treatment method, and outcome in MADD(-like) patients.
Results
Our study summarizes 23 MADD(-like) patients, including 14 new cases. Median age at clinical onset was two months (interquartile range [IQR]: 8 months). Median age at starting D,L-3-HB was seven months (IQR: 4.5 years). D,L-3-HB doses ranged between 100 and 2600 mg/kg/day. Clinical improvement was reported in 16 patients (70%) for cardiomyopathy, leukodystrophy, liver symptoms, muscle symptoms, and/or respiratory failure. D,L-3-HB appeared not effective for neuropathy. Survival appeared longer upon D,L-3-HB compared with historical controls. Median time until first clinical improvement was one month, and ranged up to six months. Reported side effects included abdominal pain, constipation, dehydration, diarrhea, and vomiting/nausea. Median D,L-3-HB treatment duration was two years (IQR: 6 years). D,L-3-HB treatment was discontinued in 12 patients (52%).
Conclusion
The strength of the current study is the international pooling of data demonstrating that D,L-3-HB treatment can be effective and safe in MADD(-like) patients.
Journal Article
Multiple acyl-CoA dehydrogenase deficiency kills Mycobacterium tuberculosis in vitro and during infection
2021
The human pathogen
Mycobacterium tuberculosis
depends on host fatty acids as a carbon source. However, fatty acid β-oxidation is mediated by redundant enzymes, which hampers the development of antitubercular drugs targeting this pathway. Here, we show that
rv0338c
, which we refer to as
etfD
, encodes a membrane oxidoreductase essential for β-oxidation in
M. tuberculosis
. An
etfD
deletion mutant is incapable of growing on fatty acids or cholesterol, with long-chain fatty acids being bactericidal, and fails to grow and survive in mice. Analysis of the mutant’s metabolome reveals a block in β-oxidation at the step catalyzed by acyl-CoA dehydrogenases (ACADs), which in other organisms are functionally dependent on an electron transfer flavoprotein (ETF) and its cognate oxidoreductase. We use immunoprecipitation to show that
M. tuberculosis
EtfD interacts with FixA (EtfB), a protein that is homologous to the human ETF subunit β and is encoded in an operon with
fixB
, encoding a homologue of human ETF subunit α. We thus refer to FixA and FixB as EtfB and EtfA, respectively. Our results indicate that EtfBA and EtfD (which is not homologous to human EtfD) function as the ETF and oxidoreductase for β-oxidation in
M. tuberculosis
and support this pathway as a potential target for tuberculosis drug development.
The pathogen
Mycobacterium tuberculosis
depends on host fatty acids and cholesterol as carbon sources. Here, Beites et al. identify a protein complex that is essential for fatty acid and cholesterol utilization and thus for survival of
M. tuberculosis
during infection, supporting this pathway as a potential target for tuberculosis drug development.
Journal Article
ETFDH mutation involves excessive apoptosis and neurite outgrowth defect via Bcl2 pathway
2024
The most common mutation in southern Chinese individuals with late-onset multiple acyl-coenzyme A dehydrogenase deficiency (MADD; a fatty acid metabolism disorder) is c.250G > A (p.Ala84Thr) in the electron transfer flavoprotein dehydrogenase gene (
ETFDH
). Various phenotypes, including episodic weakness or rhabdomyolysis, exercise intolerance, and peripheral neuropathy, have been reported in both muscular and neuronal contexts. Our cellular models of MADD exhibit neurite growth defects and excessive apoptosis. Given that axonal degeneration and neuronal apoptosis may be regulated by B-cell lymphoma (BCL)-2 family proteins and mitochondrial outer membrane permeabilization through the activation of proapoptotic molecules, we measured the expression levels of proapoptotic BCL-2 family proteins (e.g., BCL-2-associated X protein and p53-upregulated modulator of apoptosis), cytochrome c, caspase-3, and caspase-9 in NSC-34 cells carrying the most common
ETFDH
mutation. The levels of these proteins were higher in the mutant cells than in the wide-type cells. Subsequent treatment of the mutant cells with coenzyme Q10 downregulated activated protein expression and mitigated neurite growth defects. These results suggest that the activation of the BCL-2/mitochondrial outer membrane permeabilization/apoptosis pathway promotes apoptosis in cellular models of MADD and that coenzyme Q10 can reverse this effect. Our findings aid the development of novel therapeutic strategies for reducing axonal degeneration and neuronal apoptosis in MADD.
Journal Article
The difference of variation types between late-onset multiple acyl-CoA dehydrogenase deficiency patients carrying biallelic and single heterozygous variations in ETFDH: a systematic review and meta-analysis
by
Guo, Junhong
,
Ma, Jing
,
Zhang, Huiqiu
in
Acyl-CoA dehydrogenase
,
Acyl-CoA dehydrogenase deficiencies
,
Age of Onset
2025
Background
Late-onset multiple acyl-CoA dehydrogenase deficiency (MADD) is an autosomal recessive disease chiefly caused by mutations in
ETFDH
gene. Mutations in the
ETFDH
gene lead to abnormal structure, impaired function, and increased degradation of ETFDH protein. However, it is not known why approximately 10% of patients carry single heterozygous variants in
ETFDH
. We speculate that different variation types (e.g., null variants and missense variants) partially account for the phenomenon.
Methods
In this study, six databases were searched up until December 01, 2024. Studies describing late-onset MADD patients carrying
ETFDH
variations were included. The analyses focused on the differences in variation types, computational pathogenicity scores of missense variants, and clinical characteristics between patients with biallelic and single heterozygous variations (biallelic group vs heterozygous group).
Results
Of the initially screened 3638 studies, 30 met the inclusion criteria, including 498 late-onset MADD patients with biallelic variations and 62 with single heterozygous variations in
ETFDH
. The relative frequency of patients carrying null variants was lower in the biallelic group (21%, 95% CI [16%-27%]) than that in the heterozygous group (34%, 95% CI [23%-48%]) (
P
= 0.044). Missense variants in the heterozygous group had stronger pathogenicity than those in the biallelic group, as reflected by the computational prediction tools, SIFT, PolyPhen-2 and metaRNN (
P
< 0.05). Patients carrying biallelic variations had a younger onset age and a higher level of serum creatine kinase at diagnosis (
P
< 0.05).
Conclusions
Late-onset MADD patients carrying single heterozygous variations in
ETFDH
gene have distinct variation profiles and clinical severity compared to those harboring biallelic variations, which highlights the complexity of this disease.
Journal Article
Newborn screening for fatty acid oxidation disorders: epidemiological and genetic findings in Southeastern China
by
Song, Weiting
,
Zhang, Suping
,
Ye, Sheng
in
Biological oxidation (Metabolism)
,
Cardiomyopathies - diagnosis
,
Cardiomyopathies - epidemiology
2025
Fatty acid oxidation disorders (FAODs) are a group of rare diseases caused by deficiencies in the function of enzymes or proteins involved in the mitochondrial oxidation of fatty acids. This study aimed to analyze the incidence, disease spectrum, gene profile, and clinical phenotypes of FAODs in the southeastern coastal region of China. Between January 2016 and June 2024, acylcarnitine, genetic mutation, and clinical manifestation data were collected from patients diagnosed with FAOD through newborn screening. A total of 210,913 newborns were screened, identifying 36 cases of FAODs, with an overall incidence of 1 in 5,859. Primary carnitine deficiency (PCD) was the most prevalent FAOD, with an incidence of 1 in 9,587, followed by multiple acyl-CoA dehydrogenase deficiency (MADD). Moreover, we identified 32 mutations, including 5 novel variants. Patients with PCD who carried homozygous variants (R254*) of the
SLC22A5
gene demonstrated significantly lower average free acylcarnitine levels than those with compound heterozygous variants (2.45 ± 1.27 µmol/L versus 4.42 ± 1.13 µmol/L,
p
< 0.05). In patients with MADD, rescreening revealed lower levels of characteristic acylcarnitines (C6, C8, C10, C12, and C14) compared with initial screening values, with 42.3% returning to normal levels. During long-term follow-up (approximately 6 years), all patients remained under clinical surveillance initiated based on their NBS diagnosis. One patient with PCD developed severe retinal detachment at age 5. Three patients with long-chain FAOD (two VLCADD, one CPT-IID) died following infections that triggered metabolic crises (ages 5 and 8 months, respectively). These fatal outcomes occurred despite early diagnosis and initiation of standard management protocols prompted by the NBS results. No other severe complications were observed in the surviving cohort. Our findings highlight the importance of developing screening protocols and clinical management strategies to improve outcomes for affected newborns.
Journal Article
Clinical, biochemical, and genetic spectrum of MADD in a South African cohort: an ICGNMD study
by
Schoonen, Maryke
,
Vorster, Barend C.
,
Smuts, Izelle
in
Acyl-CoA dehydrogenase deficiencies
,
Chemical properties
,
Child, Preschool
2024
Background
Multiple acyl-CoA dehydrogenase deficiency (MADD) is an autosomal recessive disorder resulting from pathogenic variants in three distinct genes, with most of the variants occurring in the electron transfer flavoprotein-ubiquinone oxidoreductase gene (
ETFDH)
. Recent evidence of potential founder variants for MADD in the South African (SA) population, initiated this extensive investigation. As part of the International Centre for Genomic Medicine in Neuromuscular Diseases study, we recruited a cohort of patients diagnosed with MADD from academic medical centres across SA over a three-year period. The aim was to extensively profile the clinical, biochemical, and genomic characteristics of MADD in this understudied population.
Methods
Clinical evaluations and whole exome sequencing were conducted on each patient. Metabolic profiling was performed before and after treatment, where possible. The recessive inheritance and phase of the variants were established via segregation analyses using Sanger sequencing. Lastly, the haplotype and allele frequencies were determined for the two main variants in the four largest SA populations.
Results
Twelve unrelated families (ten of White SA and two of mixed ethnicity) with clinically heterogeneous presentations in 14 affected individuals were observed, and five pathogenic
ETFDH
variants were identified. Based on disease severity and treatment response, three distinct groups emerged. The most severe and fatal presentations were associated with the homozygous c.[1067G > A];c.[1067G > A] and compound heterozygous c.[976G > C];c.[1067G > A] genotypes, causing MADD types I and I/II, respectively. These, along with three less severe compound heterozygous genotypes (c.[1067G > A];c.[1448C > T], c.[740G > T];c.[1448C > T], and c.[287dupA*];c.[1448C > T]), resulting in MADD types II/III, presented before the age of five years, depending on the time and maintenance of intervention. By contrast, the homozygous c.[1448C > T];c.[1448C > T] genotype, which causes MADD type III, presented later in life. Except for the type I, I/II and II cases, urinary metabolic markers for MADD improved/normalised following treatment with riboflavin and L-carnitine. Furthermore, genetic analyses of the most frequent variants (c.[1067G > A] and c.[1448C > T]) revealed a shared haplotype in the region of
ETFDH
, with SA population-specific allele frequencies of < 0.00067–0.00084%.
Conclusions
This study reveals the first extensive genotype–phenotype profile of a MADD patient cohort from the diverse and understudied SA population. The pathogenic variants and associated variable phenotypes were characterised, which will enable early screening, genetic counselling, and patient-specific treatment of MADD in this population.
Journal Article
Development of Novel Experimental Models to Study Flavoproteome Alterations in Human Neuromuscular Diseases: The Effect of Rf Therapy
2020
Inborn errors of Riboflavin (Rf) transport and metabolism have been recently related to severe human neuromuscular disorders, as resulting in profound alteration of human flavoproteome and, therefore, of cellular bioenergetics. This explains why the interest in studying the “flavin world”, a topic which has not been intensively investigated before, has increased much over the last few years. This also prompts basic questions concerning how Rf transporters and FAD (flavin adenine dinucleotide) -forming enzymes work in humans, and how they can create a coordinated network ensuring the maintenance of intracellular flavoproteome. The concept of a coordinated cellular “flavin network”, introduced long ago studying humans suffering for Multiple Acyl-CoA Dehydrogenase Deficiency (MADD), has been, later on, addressed in model organisms and more recently in cell models. In the frame of the underlying relevance of a correct supply of Rf in humans and of a better understanding of the molecular rationale of Rf therapy in patients, this review wants to deal with theories and existing experimental models in the aim to potentiate possible therapeutic interventions in Rf-related neuromuscular diseases.
Journal Article