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Mutation in the α-synuclein gene identified in families with Parkinson's disease

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TLDR
A mutation was identified in the α-synuclein gene, which codes for a presynaptic protein thought to be involved in neuronal plasticity, in the Italian kindred and in three unrelated families of Greek origin with autosomal dominant inheritance for the PD phenotype.
Abstract
Parkinson's disease (PD) is a common neurodegenerative disorder with a lifetime incidence of approximately 2 percent. A pattern of familial aggregation has been documented for the disorder, and it was recently reported that a PD susceptibility gene in a large Italian kindred is located on the long arm of human chromosome 4. A mutation was identified in the α-synuclein gene, which codes for a presynaptic protein thought to be involved in neuronal plasticity, in the Italian kindred and in three unrelated families of Greek origin with autosomal dominant inheritance for the PD phenotype. This finding of a specific molecular alteration associated with PD will facilitate the detailed understanding of the pathophysiology of the disorder.

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Neuroinflammation is a key player in Parkinson's disease and a prime target for therapy.

TL;DR: This review paper focuses on the understanding of the inflammatory etiology of PD, as well as the molecular signaling involved in this inflammatory response, with the aim of providing more effective treatments to slow down or halt the progression of chronic inflammation-induced CNS disorders, such as PD.
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Native α-synuclein induces clustering of synaptic-vesicle mimics via binding to phospholipids and synaptobrevin-2/VAMP2

TL;DR: In this paper, a single-vesicle optical microscopy system was used to investigate the role of α-synuclein in synaptic vesicle clustering in Parkinson's disease.
Journal ArticleDOI

Aggresome-related biogenesis of Lewy bodies.

TL;DR: It is shown that inhibition of proteasomal function or generation of misfolded proteins cause the formation of aggresome/Lewy body‐like inclusions and cytotoxicity in dopaminergic neurons in culture, suggesting that Lewy body formation may be an Aggresome‐related event in response to increasing levels of abnormal proteins in neurons.
Journal ArticleDOI

Immunohistochemical and subcellular localization of parkin protein: Absence of protein in autosomal recessive juvenile parkinsonism patients

TL;DR: Subcellular localization of Parkin protein in patients with AR‐JP or Parkinson's disease (PD) and in controls by immunoblotting and immunohistochemistry using antibodies raised against the Parkin molecule is reported.
Journal ArticleDOI

Lack of nigral pathology in transgenic mice expressing human alpha-synuclein driven by the tyrosine hydroxylase promoter.

TL;DR: It is suggested that overexpression of alpha-synuclein within nigrostriatal dopaminergic neurons is not in itself sufficient to cause aggregation into Lewy body-like inclusions, nor does it trigger overt neurodegenerative changes.
References
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Familial Alzheimer's disease in kindreds with missense mutations in a gene on chromosome 1 related to the Alzheimer's disease type 3 gene

TL;DR: Analysis of the nucleotide sequence of the open reading frame of the E5-1 gene led to the discovery of two missense substitutions at conserved amino-acid residues in affected members of pedigrees with a form of familial AD that has a later age of onset than the AD3 subtype (50–70 years versus 30–60 years for AD3).
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Synuclein: a neuron-specific protein localized to the nucleus and presynaptic nerve terminal

TL;DR: An antiserum against purified cholinergic synaptic vesicles from Torpedo and expression screening was used to isolate a cDNA clone encoding synuclein, a 143 amino acid neuron-specific protein that is expressed only in nervous system tissue.
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Molecular cloning of cDNA encoding an unrecognized component of amyloid in Alzheimer disease

TL;DR: Primary structure predictions indicate that the NAC peptide sequence has a strong tendency to form beta-structures consistent with its association with amyloid, and the availability of the cDNA encoding full-length NACP should help to elucidate the mechanisms of amyloidsosis in AD.
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Linkage of a prion protein missense variant to Gerstmann–Sträussler syndrome

TL;DR: It is shown here that PrP codon 102 is linked to the putative gene for the syndrome in two pedigrees, providing the best evidence to date that this familial condition is inherited despite also being infectious, and that substitution of leucine for proline at PrPcodon 102 may lead to the development of Gerstmann–Sträussler syndrome.
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