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September 29, 2014Proceedings of the National Academy of Sciences183 citationsOpen Access

The hereditary spastic paraplegia-related enzyme DDHD2 is a principal brain triglyceride lipase

JIJordon M. InloesKHKu‐Lung HsuMDMelissa M. Dix

Key Result

Genetic disruption or pharmacological inhibition of DDHD2 in mice caused massive accumulation of triglycerides and lipid droplets in central nervous system neurons, leading to motor and cognitive impairments.

Structured PICO

P
Population
Preclinical study using DDHD2 knockout mice and selective inhibitors to investigate the biochemical function of the DDHD2 enzyme in the central nervous system.
I
Intervention
DDHD2 knockout or selective in vivo-active DDHD2 inhibitor
C
Comparator
Wild-type mice or untreated controls
O
Outcome
Brain triglyceride (TAG) levels and lipid droplet accumulationsurrogate

DDHD2 is a principal brain triglyceride lipase, and its disruption leads to massive lipid accumulation in neurons, providing a biochemical basis for complex hereditary spastic paraplegia.

Limitations

  • The study cannot explain why subchronic treatment with a DDHD2 inhibitor is needed to produce TAG elevations in the mouse brain.
  • It remains possible that DDHD2 regulates distinct classes of lipids in the mouse versus human brain.

Abstract

Complex hereditary spastic paraplegia (HSP) is a genetic disorder that causes lower limb spasticity and weakness and intellectual disability. Deleterious mutations in the poorly characterized serine hydrolase DDHD2 are a causative basis for recessive complex HSP. DDHD2 exhibits phospholipase activity in vitro, but its endogenous substrates and biochemical functions remain unknown. Here, we report the development of DDHD2(-/-) mice and a selective, in vivo-active DDHD2 inhibitor and their use in combination with mass spectrometry-based lipidomics to discover that DDHD2 regulates brain triglycerides (triacylglycerols, or TAGs). DDHD2(-/-) mice show age-dependent TAG elevations in the central nervous system, but not in several peripheral tissues. Large lipid droplets accumulated in DDHD2(-/-) brains and were localized primarily to the intracellular compartments of neurons. These metabolic changes were accompanied by impairments in motor and cognitive function. Recombinant DDHD2 displays TAG hydrolase activity, and TAGs accumulated in the brains of wild-type mice treated subchronically with a selective DDHD2 inhibitor. These findings, taken together, indicate that the central nervous system possesses a specialized pathway for metabolizing TAGs, disruption of which leads to massive lipid accumulation in neurons and complex HSP syndrome.

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Cite This Study

Inloes et al. (2014) studied Hereditary spastic paraplegia. DDHD2 genetic disruption or pharmacological inhibition vs. Wild-type or vehicle was evaluated on Brain triglyceride (TAG) levels and lipid droplet accumulation. Genetic disruption or pharmacological inhibition of DDHD2 in mice caused massive accumulation of triglycerides and lipid droplets in central nervous system neurons, leading to motor and cognitive impairments.

synapsesocial.com/papers/6aa3e74334adc638f921d897https://doi.org/10.1073/pnas.1413706111
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