Raft-like microdomains play a key role in mitochondrial impairment in lymphoid cells from patients with Huntington's disease.

J Lipid Res

Section of Cell Aging and Degeneration, Department of Therapeutic Research and Medicine Evaluation, and Department of Technology, Istituto Superiore di Sanità, Rome, Italy; San Raffaele Institute Sulmona, L'Aquila, Italy. Electronic address:

Published: October 2012

AI Article Synopsis

  • Huntington's disease (HD) is a genetic disorder linked to the huntingtin protein, which is toxic to cells, particularly in the nucleus and mitochondria.
  • Research on immortalized lymphocytes from HD patients reveals significant mitochondrial changes, including aggregation, hyperpolarization, and increased vulnerability to apoptosis.
  • These alterations may result from defects in the mitochondrial fission/fusion processes, influenced by structures called raft-like microdomains that impact mitochondrial function.

Article Abstract

Huntington's disease (HD) is a genetic neurodegenerative disease characterized by an exceedingly high number of contiguous glutamine residues in the translated protein, huntingtin (Htt). The primary site of cell toxicity is the nucleus, but mitochondria have been identified as key components of cell damage. The present work has been carried out in immortalized lymphocytes from patients with HD. These cells, in comparison with lymphoid cells from healthy subjects, displayed: i) a redistribution of mitochondria, forming large aggregates; ii) a constitutive hyperpolarization of mitochondrial membrane; and iii) a constitutive alteration of mitochondrial fission machinery, with high apoptotic susceptibility. Moreover, mitochondrial fission molecules, e.g., protein dynamin-related protein 1, as well as Htt, associated with mitochondrial raft-like microdomains, glycosphingolipid-enriched structures detectable in mitochondria. These findings, together with the observation that a ceramide synthase inhibitor and a raft disruptor are capable of impairing the peculiar mitochondrial remodeling in HD cells, suggest that mitochondrial alterations occurring in these cells could be due to raft-mediated defects of mitochondrial fission/fusion machinery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3435539PMC
http://dx.doi.org/10.1194/jlr.M026062DOI Listing

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