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Published on: November 1, 2024
PARL deficiency in mouse causes Complex III defects, coenzyme Q depletion, and Leigh-like syndrome
Marco Spinazzi1,2, Enrico Radaelli3, Katrien Horré4,2
1VIB Center for Brain and Disease Research, 3000 Leuven, Belgium; maspinazzi@gmail.com bartdestrooper@kuleuven.vib.be.
Abstract:
The mitochondrial intramembrane rhomboid protease PARL has been implicated in diverse functions in vitro, but its physiological role in vivo remains unclear. Here we show that Parl ablation in mouse causes a necrotizing encephalomyelopathy similar to Leigh syndrome, a mitochondrial disease characterized by disrupted energy production. Mice with conditional PARL deficiency in the nervous system, but not in muscle, develop a similar phenotype as germline Parl KOs, demonstrating the vital role of PARL in neurological homeostasis. Genetic modification of two major PARL substrates, PINK1 and PGAM5, do not modify this severe neurological phenotype. Parl- brain mitochondria are affected by progressive ultrastructural changes and by defects in Complex III (CIII) activity, coenzyme Q (CoQ) biosynthesis, and mitochondrial calcium metabolism. PARL is necessary for the stable expression of TTC19, which is required for CIII activity, and of COQ4, which is essential in CoQ biosynthesis. Thus, PARL plays a previously overlooked constitutive role in the maintenance of the respiratory chain in the nervous system, and its deficiency causes progressive mitochondrial dysfunction and structural abnormalities leading to neuronal necrosis and Leigh-like syndrome.
Insights
Mitochondrial protease PARL deficiency causes Leigh syndrome-like neurological disease in mice. PARL is crucial for maintaining the nervous system
Area of Science:
- Mitochondrial biology
- Neuroscience
- Genetics
Background:
- The intramembrane rhomboid protease PARL's in vivo function is largely unknown.
- PARL is implicated in various cellular processes in vitro.
Purpose of the Study:
- To elucidate the physiological role of PARL in vivo.
- To investigate the consequences of PARL deficiency in the nervous system.
Main Methods:
- Germline and conditional PARL knockout mouse models were generated.
- Mitochondrial function, ultrastructure, and protein expression were analyzed.
- Genetic interactions with PARL substrates were examined.
Main Results:
- PARL ablation in mice leads to necrotizing encephalomyelopathy resembling Leigh syndrome.
- Conditional PARL deficiency in the nervous system recapitulates this phenotype.
- Mitochondria exhibit ultrastructural defects, impaired Complex III activity, and altered calcium metabolism.
- PARL is essential for TTC19 and COQ4 expression, impacting respiratory chain and CoQ biosynthesis.
Conclusions:
- PARL plays a critical, previously unrecognized role in maintaining nervous system respiratory chain function.
- PARL deficiency results in progressive mitochondrial dysfunction and neuronal death, causing a Leigh-like syndrome.
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