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Search: WFRF:(Wijmenga Cisca) > Uppsala University > Prodynorphin mutati...

Prodynorphin mutations cause the neurodegenerative disorder spinocerebellar ataxia type 23.

Bakalkin, Georgy (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap,Molecular neuropsychopharmacology
Watanabe, Hiroyuki (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap,Molecular neuropsychopharmacology
Jezierska, Justyna (author)
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Depoorter, Cloë (author)
Verschuuren-Bemelmans, Corien (author)
Bazov, Igor (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap
Artemenko, Konstantin A. (author)
Uppsala universitet,Institutionen för fysikalisk och analytisk kemi
Yakovleva, Tatjana (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap
Dooijes, Dennis (author)
Van de Warrenburg, Bart P. C. (author)
Zubarev, Roman A. (author)
Karolinska Institutet
Kremer, Berry (author)
Knapp, Pamela E. (author)
Hauser, Kurt F. (author)
Wijmenga, Cisca (author)
Nyberg, Fred (author)
Uppsala universitet,Institutionen för farmaceutisk biovetenskap
Sinke, Richard J. (author)
Verbeek, Dineke S. (author)
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 (creator_code:org_t)
Elsevier BV, 2010
2010
English.
In: American Journal of Human Genetics. - : Elsevier BV. - 0002-9297 .- 1537-6605. ; 87:5, s. 593-603
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Spinocerebellar ataxias (SCAs) are dominantly inherited neurodegenerative disorders characterized by progressive cerebellar ataxia and dysarthria. We have identified missense mutations in prodynorphin (PDYN) that cause SCA23 in four Dutch families displaying progressive gait and limb ataxia. PDYN is the precursor protein for the opioid neuropeptides, α-neoendorphin, and dynorphins A and B (Dyn A and B). Dynorphins regulate pain processing and modulate the rewarding effects of addictive substances. Three mutations were located in Dyn A, a peptide with both opioid activities and nonopioid neurodegenerative actions. Two of these mutations resulted in excessive generation of Dyn A in a cellular model system. In addition, two of the mutant Dyn A peptides induced toxicity above that of wild-type Dyn A in cultured striatal neurons. The fourth mutation was located in the nonopioid PDYN domain and was associated with altered expression of components of the opioid and glutamate system, as evident from analysis of SCA23 autopsy tissue. Thus, alterations in Dyn A activities and/or impairment of secretory pathways by mutant PDYN may lead to glutamate neurotoxicity, which underlies Purkinje cell degeneration and ataxia. PDYN mutations are identified in a small subset of ataxia families, indicating that SCA23 is an infrequent SCA type (~0.5%) in the Netherlands and suggesting further genetic SCA heterogeneity.

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