Literature DB >> 19530165

The small heat shock protein Hsp27 protects cortical neurons against the toxic effects of beta-amyloid peptide.

Michael King1, Firoozeh Nafar, Joseph Clarke, Karen Mearow.   

Abstract

Neurofibrillary tangles and amyloid plaques are considered to be hallmarks of Alzheimer's disease (AD), and the toxic effects of amyloid-beta peptide (A beta) lead to activation of stress-related signaling and neuronal loss. The small heat shock protein Hsp27 is reported to be increased in AD brains and to accumulate in plaques, but whether this represents a potentially protective response to stress or is part of the disease process is not known. We hypothesized that increased expression of Hsp27 in neurons can promote neuronal survival and stabilize the cytoskeleton in the face of A beta exposure. By using neonatal rat cortical neurons, we investigated the potential role of Hsp27 in neuronal cultures in the presence or absence of A beta. We initially tested whether a heat stress (HS) would be sufficient to induce endogenous Hsp27 expression. HS not only did not result in neuronal Hsp27 up-regulation but made the cells more vulnerable to A beta exposure. We then used cDNA transfection to overexpress EGFP-Hsp27 (or the empty vector) in cultures and then assessed neuronal survival and growth. Transfected neurons appeared healthy and had robust neuritic outgrowth. A beta treatment induced significant cell death by 48-72 hr in nontransfected and empty-vector-expressing cultures. In contrast, cultures expressing Hsp27 did not display significant apoptosis. Our results show that Hsp27-expressing neurons were selectively protected against the deleterious effects of A beta treatment; neuronal degeneration was prevented, and A beta-induced alterations in mitochondrial size were attenuated. We also demonstrate that Hsp27 expression can enhance neurite growth in cortical neurons compared with control vector-transfected cells. Overall, our study provides new evidence that Hsp27 can provide a protective influence in primary cortical neurons in the face of toxic concentrations of amyloid. (c) 2009 Wiley-Liss, Inc.

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Year:  2009        PMID: 19530165     DOI: 10.1002/jnr.22145

Source DB:  PubMed          Journal:  J Neurosci Res        ISSN: 0360-4012            Impact factor:   4.164


  14 in total

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Review 2.  Heat shock proteins: cellular and molecular mechanisms in the central nervous system.

Authors:  R Anne Stetler; Yu Gan; Wenting Zhang; Anthony K Liou; Yanqin Gao; Guodong Cao; Jun Chen
Journal:  Prog Neurobiol       Date:  2010-06-04       Impact factor: 11.685

3.  Modulation of Alzheimer's amyloid β peptide oligomerization and toxicity by extracellular Hsp70.

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Journal:  Cell Stress Chaperones       Date:  2017-09-27       Impact factor: 3.667

4.  Multiple protein kinases determine the phosphorylated state of the small heat shock protein, HSP27, in SH-SY5Y neuroblastoma cells.

Authors:  Linda A Dokas; Amy M Malone; Frederick E Williams; Surya M Nauli; William S Messer
Journal:  Neuropharmacology       Date:  2011-02-19       Impact factor: 5.250

5.  Induction of heat shock proteins in cerebral cortical cultures by celastrol.

Authors:  Ari M Chow; Derek W F Tang; Asad Hanif; Ian R Brown
Journal:  Cell Stress Chaperones       Date:  2012-08-03       Impact factor: 3.667

6.  The Potential of Indole/Indolylquinoline Compounds in Tau Misfolding Reduction by Enhancement of HSPB1.

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7.  HSP27 protects the blood-brain barrier against ischemia-induced loss of integrity.

Authors:  Rehana K Leak; Lili Zhang; R Anne Stetler; Zhongfang Weng; Peiying Li; G Brandon Atkins; Yanqin Gao; Jun Chen
Journal:  CNS Neurol Disord Drug Targets       Date:  2013-05-01       Impact factor: 4.388

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Journal:  CNS Neurosci Ther       Date:  2018-09-14       Impact factor: 5.243

9.  Exploiting the diversity of the heat-shock protein family for primary and secondary tauopathy therapeutics.

Authors:  Jose F Abisambra; Umesh K Jinwal; Jeffrey R Jones; Laura J Blair; John Koren; Chad A Dickey
Journal:  Curr Neuropharmacol       Date:  2011-12       Impact factor: 7.363

10.  Pinocembrin protects against β-amyloid-induced toxicity in neurons through inhibiting receptor for advanced glycation end products (RAGE)-independent signaling pathways and regulating mitochondrion-mediated apoptosis.

Authors:  Rui Liu; Cai-Xia Wu; Dan Zhou; Fan Yang; Shuo Tian; Li Zhang; Tian-Tai Zhang; Guan-Hua Du
Journal:  BMC Med       Date:  2012-09-18       Impact factor: 8.775

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