Literature DB >> 30782973

Cysteine-rich granulin-3 rapidly promotes amyloid-β fibrils in both redox states.

Anukool A Bhopatkar1, Gaurav Ghag1, Lauren M Wolf2, Dexter N Dean1, Melissa A Moss2,3, Vijayaraghavan Rangachari4.   

Abstract

Granulins (GRNs 1-7) are cysteine-rich proteolytic products of progranulin (PGRN) that have recently been implicated in neurodegenerative diseases including frontotemporal dementia (FTD) and Alzheimer's disease (AD). Their precise mechanism in these pathologies remains uncertain, but both inflammatory and lysosomal roles have been observed for GRNs. Among the seven GRNs, GRN-3 is well characterized and is implicated within the context of FTD. However, the relationship between GRN-3 and amyloid-β (Aβ), a protein relevant in AD pathology, has not yet been explored. To gain insight into this mechanism, we investigated the effect of both oxidized and reduced GRN-3 on Aβ aggregation and found that both GRN-3 (oxidized) and rGRN-3 (reduced) bind to monomeric and oligomeric Aβ42 to promote rapid fibril formation with subtle rate differences. As low molecular weight oligomers of Aβ are well-established neurotoxins, rapid promotion of fibrils by GRN-3 mitigates Aβ42-induced cellular apoptosis. These data provide valuable insights in understanding GRN-3's ability to modulate Aβ-induced toxicity under redox control and presents a new perspective toward AD pathology. These results also prompt further investigation into the role(s) of other GRNs in AD pathogenesis.
© 2019 The Author(s). Published by Portland Press Limited on behalf of the Biochemical Society.

Entities:  

Keywords:  Alzheimer's disease; amyloid-β; cysteine-rich proteins; granulin; neurodegeneration; progranulin

Mesh:

Substances:

Year:  2019        PMID: 30782973      PMCID: PMC6647844          DOI: 10.1042/BCJ20180916

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  51 in total

1.  Anti-Abeta42- and anti-Abeta40-specific mAbs attenuate amyloid deposition in an Alzheimer disease mouse model.

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Journal:  J Clin Invest       Date:  2005-12-08       Impact factor: 14.808

2.  Proteinase 3 and neutrophil elastase enhance inflammation in mice by inactivating antiinflammatory progranulin.

Authors:  Kai Kessenbrock; Leopold Fröhlich; Michael Sixt; Tim Lämmermann; Heiko Pfister; Andrew Bateman; Azzaq Belaaouaj; Johannes Ring; Markus Ollert; Reinhard Fässler; Dieter E Jenne
Journal:  J Clin Invest       Date:  2008-07       Impact factor: 14.808

3.  Microglial dysfunction and defective beta-amyloid clearance pathways in aging Alzheimer's disease mice.

Authors:  Suzanne E Hickman; Elizabeth K Allison; Joseph El Khoury
Journal:  J Neurosci       Date:  2008-08-13       Impact factor: 6.167

Review 4.  Progranulin (granulin-epithelin precursor, PC-cell-derived growth factor, acrogranin) mediates tissue repair and tumorigenesis.

Authors:  Zhiheng He; Andrew Bateman
Journal:  J Mol Med (Berl)       Date:  2003-08-19       Impact factor: 4.599

5.  Executioner caspase-3 and caspase-7 are functionally distinct proteases.

Authors:  John G Walsh; Sean P Cullen; Clare Sheridan; Alexander U Lüthi; Christopher Gerner; Seamus J Martin
Journal:  Proc Natl Acad Sci U S A       Date:  2008-08-22       Impact factor: 11.205

6.  Conversion of proepithelin to epithelins: roles of SLPI and elastase in host defense and wound repair.

Authors:  Jing Zhu; Carl Nathan; Wenwen Jin; Davis Sim; Gillian S Ashcroft; Sharon M Wahl; Lynne Lacomis; Hediye Erdjument-Bromage; Paul Tempst; Clifford D Wright; Aihao Ding
Journal:  Cell       Date:  2002-12-13       Impact factor: 41.582

7.  Mutations in progranulin cause tau-negative frontotemporal dementia linked to chromosome 17.

Authors:  Matt Baker; Ian R Mackenzie; Stuart M Pickering-Brown; Jennifer Gass; Rosa Rademakers; Caroline Lindholm; Julie Snowden; Jennifer Adamson; A Dessa Sadovnick; Sara Rollinson; Ashley Cannon; Emily Dwosh; David Neary; Stacey Melquist; Anna Richardson; Dennis Dickson; Zdenek Berger; Jason Eriksen; Todd Robinson; Cynthia Zehr; Chad A Dickey; Richard Crook; Eileen McGowan; David Mann; Bradley Boeve; Howard Feldman; Mike Hutton
Journal:  Nature       Date:  2006-07-16       Impact factor: 49.962

8.  Progranulin regulates neuronal outgrowth independent of sortilin.

Authors:  Jennifer Gass; Wing C Lee; Casey Cook; Nicole Finch; Caroline Stetler; Karen Jansen-West; Jada Lewis; Christopher D Link; Rosa Rademakers; Anders Nykjær; Leonard Petrucelli
Journal:  Mol Neurodegener       Date:  2012-07-10       Impact factor: 14.195

9.  Intracellular Proteolysis of Progranulin Generates Stable, Lysosomal Granulins that Are Haploinsufficient in Patients with Frontotemporal Dementia Caused by GRN Mutations.

Authors:  Christopher J Holler; Georgia Taylor; Qiudong Deng; Thomas Kukar
Journal:  eNeuro       Date:  2017-08-18

10.  Progranulin acts as a shared chaperone and regulates multiple lysosomal enzymes.

Authors:  Jinlong Jian; Aubryanna Hettinghouse; Chuan-Ju Liu
Journal:  Genes Dis       Date:  2017-06-23
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  5 in total

1.  Disorder and cysteines in proteins: A design for orchestration of conformational see-saw and modulatory functions.

Authors:  Anukool A Bhopatkar; Vladimir N Uversky; Vijayaraghavan Rangachari
Journal:  Prog Mol Biol Transl Sci       Date:  2020-06-27       Impact factor: 3.622

2.  Granulins modulate liquid-liquid phase separation and aggregation of the prion-like C-terminal domain of the neurodegeneration-associated protein TDP-43.

Authors:  Anukool A Bhopatkar; Vladimir N Uversky; Vijayaraghavan Rangachari
Journal:  J Biol Chem       Date:  2020-01-06       Impact factor: 5.157

3.  Are granulins copper sequestering proteins?

Authors:  Anukool A Bhopatkar; Vijayaraghavan Rangachari
Journal:  Proteins       Date:  2020-12-09

Review 4.  Progranulin Regulates Inflammation and Tumor.

Authors:  Chunxiao Liu; Jiayi Li; Wenjing Shi; Liujia Zhang; Shuang Liu; Yingcong Lian; Shujuan Liang; Hongyan Wang
Journal:  Antiinflamm Antiallergy Agents Med Chem       Date:  2020

Review 5.  Secreted Chaperones in Neurodegeneration.

Authors:  Kriti Chaplot; Timothy S Jarvela; Iris Lindberg
Journal:  Front Aging Neurosci       Date:  2020-08-27       Impact factor: 5.750

  5 in total

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