Systemic manifestation and contribution of peripheral tissues to Huntington's disease pathogenesis

Chia-Lung Chuang1, Fabio Demontis1

  • 1Department of Developmental Neurobiology, St. Jude Children's Research Hospital, Memphis, TN, 38105, USA.

Insights

Huntington disease (HD) affects peripheral tissues, causing systemic effects like muscle wasting. Targeting these peripheral symptoms and leveraging inter-tissue signaling may offer new therapeutic strategies for brain health.

Area of Science:

  • Neurodegenerative diseases
  • Genetics
  • Systemic physiology

Background:

  • Huntington disease (HD) is a genetic neurodegenerative disorder caused by expanded repeats in the huntingtin (HTT) gene.
  • While primarily affecting the central nervous system, emerging evidence highlights peripheral tissue involvement in HD pathogenesis.
  • Systemic signaling from peripheral tissues can significantly influence HD progression in the brain.

Purpose of the Study:

  • To review the systemic manifestations of HD in peripheral tissues.
  • To examine the impact of peripheral tissue signaling on HD pathogenesis.
  • To explore potential therapeutic strategies targeting peripheral tissues in HD.

Main Methods:

  • Literature review of studies on Huntington disease.
  • Analysis of mechanisms underlying systemic effects in HD.
  • Investigation of inter-tissue signaling pathways in HD.

Main Results:

  • Mutant huntingtin protein (HTT) induces cachexia through effects on skeletal muscle, bone, adipose tissue, and heart.
  • HD leads to metabolic dysregulation involving the pancreas, liver, gut, and endocrine axes.
  • Pathogenic HTT can spread systemically and potentially reach the central nervous system via axonal transport.

Conclusions:

  • Huntington disease is a systemic disorder influenced by peripheral tissue pathology and inter-tissue communication.
  • Therapeutic strategies for HD should consider ameliorating peripheral symptoms.
  • Harnessing peripheral-to-central nervous system signaling holds promise for reducing HD progression.

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