4.5 Article

Subtype and regional regulation of prion biomarkers in sporadic Creutzfeldt-Jakob disease

期刊

NEUROPATHOLOGY AND APPLIED NEUROBIOLOGY
卷 41, 期 5, 页码 631-645

出版社

WILEY
DOI: 10.1111/nan.12175

关键词

cerebrospinal fluid; Creutzfeldt-Jakob disease; disease subtype; glycogen synthase kinase 3; prion biomarkers; prion protein

资金

  1. Seventh Framework Program of the European Commission DEVELAGE project
  2. PRIORITY project
  3. European Union Joint Program DEMTEST
  4. Spanish Ministry of Health
  5. Instituto Carlos III: FIS [PI1100968]
  6. CIBERNED project BESAD-P

向作者/读者索取更多资源

AimsCreutzfeldt-Jakob disease (CJD) is a rapid progressive neurological disease leading to dementia and death. Prion biomarkers are altered in the cerebrospinal fluid (CSF) of CJD patients, but the pathogenic mechanisms underlying these alterations are still unknown. The present study examined prion biomarker levels in the brain and CSF of sporadic CJD (sCJD) cases and their correlation with neuropathological lesion profiles. MethodsThe expression levels of 14-3-3, Tau, phospho-Tau and -synuclein were measured in the CSF and brain of sCJD cases in a subtype- and region-specific manner. In addition, the activity of prion biomarker kinases, the expression levels of CJD hallmarks and the most frequent neuropathological sCJD findings were analysed. ResultsPrion biomarkers levels were increased in the CSF of sCJD patients; however, correlations between mRNA, total protein and their phosphorylated forms in brain were different. The observed downregulation of the main Tau kinase, GSK3, in sCJD brain samples may help to explain the differential phospho-Tau/Tau ratios between sCJD and other dementias in the CSF. Importantly, CSF biomarkers levels do not necessarily correlate with sCJD neuropathological findings. InterpretationPresent findings indicate that prion biomarkers levels in sCJD tissues and their release into the CSF are differentially regulated following specific modulated responses, and suggest a functional role for these proteins in sCJD pathogenesis.

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