The two faces of protein misfolding: gain- and loss-of-function in neurodegenerative diseases
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Open Access
- 23 January 2008
- journal article
- review article
- Published by Springer Nature in The EMBO Journal
- Vol. 27 (2) , 336-349
- https://doi.org/10.1038/sj.emboj.7601930
Abstract
The etiologies of neurodegenerative diseases may be diverse; however, a common pathological denominator is the formation of aberrant protein conformers and the occurrence of pathognomonic proteinaceous deposits. Different approaches coming from neuropathology, genetics, animal modeling and biophysics have established a crucial role of protein misfolding in the pathogenic process. However, there is an ongoing debate about the nature of the harmful proteinaceous species and how toxic conformers selectively damage neuronal populations. Increasing evidence indicates that soluble oligomers are associated with early pathological alterations, and strikingly, oligomeric assemblies of different disease‐associated proteins may share common structural features. A major step towards the understanding of mechanisms implicated in neuronal degeneration is the identification of genes, which are responsible for familial variants of neurodegenerative diseases. Studies based on these disease‐associated genes illuminated the two faces of protein misfolding in neurodegeneration: a gain of toxic function and a loss of physiological function, which can even occur in combination. Here, we summarize how these two faces of protein misfolding contribute to the pathomechanisms of Alzheimer's disease, frontotemporal lobar degeneration, Parkinson's disease and prion diseases.Keywords
This publication has 186 references indexed in Scilit:
- The cellular prion protein (PrPC): Its physiological function and role in diseaseBiochimica et Biophysica Acta (BBA) - Molecular Basis of Disease, 2007
- HDDD2 is a familial frontotemporal lobar degeneration with ubiquitin‐positive, tau‐negative inclusions caused by a missense mutation in the signal peptide of progranulinAnnals of Neurology, 2006
- A regulated interaction with the UIM protein Eps15 implicates parkin in EGF receptor trafficking and PI(3)K–Akt signallingNature Cell Biology, 2006
- α-Synuclein Cooperates with CSPα in Preventing NeurodegenerationCell, 2005
- Dopamine covalently modifies and functionally inactivates parkinNature Medicine, 2005
- α-synuclein locus duplication as a cause of familial Parkinson's diseasePublished by Elsevier ,2004
- Inclusion body myopathy associated with Paget disease of bone and frontotemporal dementia is caused by mutant valosin-containing proteinNature Genetics, 2004
- The new mutation, E46K, of α‐synuclein causes parkinson and Lewy body dementiaAnnals of Neurology, 2003
- Vesicle Permeabilization by Protofibrillar α-Synuclein: Implications for the Pathogenesis and Treatment of Parkinson's DiseaseBiochemistry, 2001
- AlaSOPro mutation in the gene encoding α-synuclein in Parkinson's diseaseNature Genetics, 1998