Literature DB >> 22692785

Reduction of protein kinase MARK4 in the brains of experimental scrapie rodents and human prion disease correlates with deposits of PrP(Sc).

Han-Shi Gong1, Yan Guo, Chan Tian, Wu-Ling Xie, Qi Shi, Jin Zhang, Yin Xu, Shao-Bin Wang, Bao-Yun Zhang, Cao Chen, Yong Liu, Xiao-Ping Dong.   

Abstract

Microtubule affinity-regulating kinase 4 (MARK4) belongs to a family of kinases that are able to actively phosphorylate the neuronal microtubule-associate proteins (MAPs), such as tau, MAP2 and the ubiquitous MAP4. Abnormal changes in tubulin and the profiles of tau have been previously reported in the human brain and animal transmissible spongiform encephalopathies (TSEs), which may be associated with abnormal alterations of various cellular kinases. To elucidate the possible role of MARK4 in TSE pathogenesis, the MARK4 levels in the brain tissues of scrapie-infected rodents and human prion diseases were evaluated using western blotting and immunohistochemical assays. The results revealed that at terminal stages of the diseases, MARK4 levels in the brain tissues of the scrapie 263K-infected hamsters, 139A-infected mice and a case of Creutzfeldt-Jakob disease (CJD, G114V gCJD) correlated with amounts of PrP(Sc) deposits that were almost undetectable. On the other hand MARK4 signals were noticeable in the brain tissues of a fatal familial insomnia (FFI) patient without PrP(Sc). The reduction of MARK4 was closely related to the prolonged incubation times. These results could be reproduced in SK-N-SH and PC12 cell lines after being exposed to the synthetic peptide PrP106-126. Accordingly, the levels of phosphorylated tau at Ser262 (p-tau262) in cultured cells exposed to PrP106-126, or the ratios of p-tau262/total tau in the brain tissues of 263K-infected hamsters were also significantly decreased. According to our data there is a correlation between a TSE pathological-associated decline of MARK4 in the brain tissues with the deposits of PrP(Sc). Reduction of MARK4 will result in abnormalities of tau phosphorylation, and possibly induce further detachment of microtubules and hinder microtubule transportation.

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Year:  2012        PMID: 22692785     DOI: 10.3892/ijmm.2012.1025

Source DB:  PubMed          Journal:  Int J Mol Med        ISSN: 1107-3756            Impact factor:   4.101


  3 in total

Review 1.  Brain iron homeostasis: from molecular mechanisms to clinical significance and therapeutic opportunities.

Authors:  Neena Singh; Swati Haldar; Ajai K Tripathi; Katharine Horback; Joseph Wong; Deepak Sharma; Amber Beserra; Srinivas Suda; Charumathi Anbalagan; Som Dev; Chinmay K Mukhopadhyay; Ajay Singh
Journal:  Antioxid Redox Signal       Date:  2013-08-15       Impact factor: 8.401

2.  Infection of prions and treatment of PrP106-126 alter the endogenous status of protein 14-3-3 and trigger the mitochondrial apoptosis possibly via activating Bax pathway.

Authors:  Qi Shi; Qin-Qin Song; Peng Sun; Jin Zhang; Juan Song; Li-Na Chen; Kang Xiao; Shao-Bin Wang; Ya-Zhou Zhang; Gong-Qi Li; Lin-Jun Sheng; Bao-Dong Wang; Ming-Zhi Lu; Jun Han; Xiao-Ping Dong
Journal:  Mol Neurobiol       Date:  2013-10-18       Impact factor: 5.590

3.  Proteomics analyses for the global proteins in the brain tissues of different human prion diseases.

Authors:  Qi Shi; Li-Na Chen; Bao-Yun Zhang; Kang Xiao; Wei Zhou; Cao Chen; Xiao-Mei Zhang; Chan Tian; Chen Gao; Jing Wang; Jun Han; Xiao-Ping Dong
Journal:  Mol Cell Proteomics       Date:  2015-01-23       Impact factor: 5.911

  3 in total

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