4.7 Article

Sequence alterations within CYP7B1 implicate defective cholesterol homeostasis in motor-neuron degeneration

期刊

AMERICAN JOURNAL OF HUMAN GENETICS
卷 82, 期 2, 页码 510-515

出版社

CELL PRESS
DOI: 10.1016/j.ajhg.2007.10.001

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资金

  1. MRC [G0600983] Funding Source: UKRI
  2. Medical Research Council [G0600983] Funding Source: Medline
  3. NIEHS NIH HHS [R01 ES014469, ES014469] Funding Source: Medline
  4. NINDS NIH HHS [NS046535, NS050641, R01 NS050641, R01 NS046535] Funding Source: Medline
  5. Medical Research Council [G0600983] Funding Source: researchfish

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The hereditary spastic paraplegias (HSPs) are a genetically and clinically heterogeneous group of upper-motor-neuron degenerative diseases characterized by selective axonal loss in the corticospinal tracts and dorsal columns. Although numerous mechanisms involving defective subcellular transportation, mitochondrial malfunction, and increased oxidative stress have been proposed, the pathogenic basis underlying the neuronal loss is unknown. We have performed linkage analysis to refine the extent of the SPG5 disease locus and conducted sequence analysis of the genes located within this region. This identified sequence alterations in the cytochrome P450-7B1 (CYP7B1) associated with this pure form of HSP. In the liver, CYP7B1 offers an alternative pathway for cholesterol degradation and also provides the primary metabolic route for the modification of dehydroepiandrosterone neurosteroids in the brain. These findings provide the first direct evidence of a pivotal role of altered cholesterol metabolism in the pathogenesis of motor-neuron degenerative disease and identify a potential for therapeutic intervention in this form of HSP.

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