4.6 Article

Fibroblasts endocytose and degrade transthyretin aggregates in transthyretin-related amyloidosis

期刊

LABORATORY INVESTIGATION
卷 93, 期 8, 页码 911-920

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/labinvest.2013.83

关键词

amyloidosis; endocytosis; extracellular matrix; familial amyloidotic polyneuropathy; fibroblasts; transthyretin; TTR degradation

资金

  1. Amyloidosis Research Committee
  2. Pathogenesis, Therapy of Hereditary Neuropathy Research Committee
  3. Surveys and Research on Specific Disease
  4. Ministry of Health and Welfare of Japan
  5. Ministry of Education, Science, Sports and Culture of Japan [S2210]
  6. FEDER funds through the Operational Competitiveness Programe-COMPETE
  7. Portuguese Foundation for Science and Technology (FCT) [FCOMP-01-0124-FEDER-022718, PEST-c/SAU/LA0002/2011, PTDC/SAU-ORG/111313/2009, SFRH/BD/74304/2010]
  8. Fundação para a Ciência e a Tecnologia [SFRH/BD/74304/2010, PTDC/SAU-ORG/111313/2009] Funding Source: FCT

向作者/读者索取更多资源

Transthyretin (TTR)-related amyloidosis is a fatal disorder characterized by systemic extracellular deposition of TTR amyloid fibrils. Mutations in the TTR gene cause an autosomal dominant form of the disease-familial amyloidotic polyneuropathy (FAP). Wild-type (WT) TTR can also form amyloid fibrils in elderly patients with senile systemic amyloidosis. Regression of amyloid deposits in FAP patients who undergo liver transplantation to remove the main source of mutant TTR suggests the existence of mechanisms for the clearance of TTR deposits from the extracellular matrix (ECM), but the precise mechanisms are largely unknown. Because fibroblasts are abundant, playing a central role in the maintenance of the ECM and because the skin is one of the major sites of soluble TTR catabolism, in the present study, we analyzed their role in clearance of TTR aggregates. In vitro studies with a fibroblast cell line revealed that fibroblasts endocytosed and degraded aggregated TTR. Subcutaneous injection of soluble and aggregated TTR into WT mice showed internalization and clearance over time by both fibroblasts and macrophages. Immunohistochemical studies of skin biopsies from V30M patients, asymptomatic carriers, recipients of domino FAP livers as well as transgenic mice for human V30M showed intracellular TTR immunoreactivity in fibroblasts and macrophages that increased with clinical status and with age in transgenic mice. Overall, the present in vitro and in vivo data show that fibroblasts endocytose and degrade TTR aggregates. The function or dysfunction of TTR clearance by fibroblasts may have important implications for the development, progression, and regression of TTR deposition in the ECM.

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