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Reduced secretion and altered proteolytic processing caused by missense mutations in progranulin. | LitMetric

Reduced secretion and altered proteolytic processing caused by missense mutations in progranulin.

Neurobiol Aging

Biochemistry, Biomedical Center (BMC), Ludwig-Maximilians University, Munich, Germany; Munich Cluster for Systems Neurology (SyNergy), Munich, Germany; German Center for Neurodegenerative Diseases, DZNE, Munich, Germany.

Published: March 2016

AI Article Synopsis

  • Progranulin (GRN) is a growth factor linked to cellular functions, and mutations in GRN are a leading cause of frontotemporal lobar degeneration (FTLD) with specific pathology.
  • Most mutations that affect GRN are nonsense mutations, which significantly lower GRN expression; however, some missense mutations are associated with an increased risk of neurodegenerative diseases, though their harmful effects are not well understood.
  • A study identified a double missense mutation in GRN that disrupts protein secretion and folding, suggesting that these variants may contribute to neurodegenerative diseases as low-penetrant risk factors, even if their impact is less severe than complete GRN loss mutations.

Article Abstract

Progranulin (GRN) is a secreted growth factor involved in various cellular functions, and loss-of-function mutations are a major cause of frontotemporal lobar degeneration (FTLD) with TDP-43 positive pathology. Most FTLD-related GRN mutations are nonsense mutations resulting in reduced GRN expression. Nonsynonymous GRN missense mutations have been described as risk factor for neurodegenerative brain diseases, but their pathogenic nature remains largely elusive. We identified a double missense mutation in GRN leading to amino acid changes p.D33E and p.G35R in an FTLD patient from Turkish origin. Biochemical and cell biological analysis of the double-mutation together with 2 so-far uncharacterized GRN missense mutations (p.C105R and p.V514M) revealed a reduced secretion efficiency of the GRN p.D33E/p.G35R and p.C105R proteins. Furthermore, loss of the conserved cysteine residue affects protein folding and altered proteolytic processing by neutrophil elastase and proteinase 3. Our data indicate that the described variants may cause a loss-of-function, albeit to a lesser extent than GRN null mutations, and hence could be considered as low-penetrant risk factors for neurodegenerative diseases.

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Source
http://dx.doi.org/10.1016/j.neurobiolaging.2015.12.014DOI Listing

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