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Significance of ACADM mutations identified through newborn screening of MCAD deficiency in Japan
Keiichi Hara1, Go Tajima2, Satoshi Okada2
1Department of Pediatrics, National Hospital Organization Kure Medical Center, Kure 737-0023, Japan; Department of Pediatrics, Hiroshima University Graduate School of Biomedical & Health Sciences, 1-2-3 Kasumi, Minami-ku, Hiroshima 734-8551, Japan.
Background:
Since the first case was detected in 2000, there has been a remarkable increase in Japanese patients diagnosed with medium-chain acyl-CoA dehydrogenase (MCAD) deficiency. Genetic analysis has revealed a spectrum of mutations that is quite different from those observed in Caucasian populations. In 2014, Japan initiated nationwide newborn screening (NBS) for MCAD using tandem mass spectrometry (MS/MS). It is an urgent issue to assess the risk of acute metabolic decompensation from the respective novel mutations found thus far.
Methods:
To evaluate the pathogenic effect of each mutation, we established a eukaryotic cell expression system and prepared 11 mutant proteins identified in five symptomatic patients and eight MS/MS-NBS-positive newborns, as well as two common Caucasian mutations, p.K329E (c.985G>A) and p.Y67H (c.157C>T) for comparison.
Results:
The expression of four mutant proteins (p.Q45R, p.P92L, p.P128X and p.Y397N) were severely impaired, whereas the others expressed normally, as did p.K329E and p.Y67H. Based on their dehydrogenase activities toward n-octanoyl-CoA, we determined three mutations (p.R53C, p.R281S and p.G362E) to be disease-causing, two mutations having (p.R17H and p.M274V) to be of marginal risk, and two mutations (p.K271E and p.I416T) as benign. Their allele-specific activities were as a whole in accordance with those estimated from the results of measurement in peripheral blood mononuclear cells.
Conclusion:
As most of the mutations detected in the Japanese population are unique, prudent genetic and enzymatic analysis is essential to precisely evaluate the latent risk of clinical onset for screening-positive newborns.
Insights
Japanese medium-chain acyl-CoA dehydrogenase (MCAD) deficiency has unique mutations. This study evaluates novel mutations found in Japanese newborns to assess their risk of acute metabolic decompensation.
Area of Science:
- Biochemistry
- Genetics
- Metabolic Disorders
Background:
- Medium-chain acyl-CoA dehydrogenase (MCAD) deficiency cases have increased in Japan since 2000.
- Japanese MCAD deficiency mutations differ significantly from Caucasian populations.
- Nationwide newborn screening (NBS) for MCAD using tandem mass spectrometry (MS/MS) began in Japan in 2014.
Purpose of the Study:
- To assess the pathogenic effects of novel MCAD mutations identified in Japanese patients and newborns.
- To evaluate the risk of acute metabolic decompensation associated with these unique mutations.
- To compare the functional impact of Japanese mutations with common Caucasian variants.
Main Methods:
- Established a eukaryotic cell expression system to analyze 11 mutant MCAD proteins from Japanese individuals.
- Included two common Caucasian mutations (p.K329E and p.Y67H) for comparative analysis.
- Assessed protein expression levels and measured dehydrogenase activities toward n-octanoyl-CoA.
Main Results:
- Four mutant proteins (p.Q45R, p.P92L, p.P128X, p.Y397N) showed severely impaired expression.
- Three mutations (p.R53C, p.R281S, p.G362E) were determined to be disease-causing based on reduced dehydrogenase activity.
- Two mutations (p.R17H, p.M274V) were classified as marginal risk, and two (p.K271E, p.I416T) as benign.
Conclusions:
- Most MCAD mutations in Japan are population-specific.
- Precise genetic and enzymatic analysis is crucial for accurate risk assessment in screening-positive newborns.
- This evaluation aids in understanding the clinical implications of novel MCAD mutations in Japan.
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