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Published on: January 12, 2015
Effect of experimental hyperphenylalaninemia on myelin metabolism at later stages of brain development
Insights
Chronic hyperphenylalaninemia significantly accelerates myelin protein turnover in developing rats, leading to myelin loss. This finding highlights a critical vulnerability in myelin metabolism during postnatal development.
Area of Science:
- Neuroscience
- Biochemistry
- Developmental Biology
Background:
- Myelination is crucial for postnatal nervous system maturation.
- Infants are vulnerable to neurotoxins during development.
- Chronic hyperphenylalaninemia (HyPhe) may impact myelin metabolism beyond the neonatal period.
Purpose of the Study:
- To investigate how chronic hyperphenylalaninemia affects myelin metabolism in developing rats.
- To determine if HyPhe induces hypo-myelination or alters myelin protein turnover.
Main Methods:
- Rats at 25 days old were fed a diet inducing HyPhe (5% phenylalanine + 0.4% alpha-methylphenylalanine).
- Plasma phenylalanine levels mimicked untreated human PKU patients (1.5 mM).
- Myelin protein content, 3H-lysine incorporation, and protein turnover rates were measured over 70 days.
Main Results:
- HyPhe group showed a ~15% decrease in myelin protein content.
- No difference in 3H-lysine incorporation into brain or myelin proteins was observed, ruling out hypo-myelination.
- Myelin protein turnover was significantly faster in the HyPhe group (t 1/2 = 3 days) compared to controls (t 1/2 = 36 days).
Conclusions:
- Chronic hyperphenylalaninemia accelerates myelin protein turnover, leading to myelin loss.
- This accelerated turnover, not reduced synthesis, is the primary mechanism of myelin deficit in HyPhe.
- These findings reveal a critical impact of hyperphenylalaninemia on ongoing myelin accumulation during postnatal development.
Abstract:
Myelination is the most important process in postnatal maturation of the nervous system and during this period the growing infant passes through a "vulnerable period" during which irreversible brain damage can occur if the neonate is subjected to a potential neurotoxin. This study was undertaken to investigate the mechanisms by which chronic hyperphenylalaninemia interferes with myelin metabolism, beyond the neonatal period of rapid myelination, at a time when myelin continues to accumulate. Rats of 25 days of age were placed on a hyperphenylalanimenia (HyPhe) inducing diet of 5% phenylalanine plus 0.4% alpha-methylphenylalanine (alpha MP) at 25 days of age to approximate plasma phenylalanine levels of an untreated human PKU patient (1.5 mM). The HyPhe group exhibited approximately a 15% decrease in the amount of myelin protein throughout the 70 days of the study. The rate of incorporation of 3H-lysine into both TCA precipitable whole brain proteins or myelin proteins did not vary from the HyPhe group and a weight matched control group (WMC). Therefore, this loss of myelin could not be attributed to a hypo-myelination. The turnover of whole brain proteins also was unaffected by the HyPhe treatment; however, the turnover of myelin proteins in the HyPhe group was dramatically different (t 1/2 = 3 days) from that of the WMC group (t 1/2 = 36 days) or a group treated with only alpha MP (t 1/2 = 26 days).
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