| Literature DB >> 31841442 |
Abstract
Tau is a protein mainly expressed in adult human brain. It plays important roles both in neurodegenerative diseases and stroke. Stroke is an important cause of adult death and disability, ischemic stroke almost account for 80% in all cases. Abundant studies have proven that the increase of dysfunctional tau may act as a vital factor in pathological changes after ischemic stroke. However, the relationship between tau and ischemic stroke remains ununified. Based on present studies, we firstly introduced the structure and biological function of tau protein. Secondly, we summarized the potential regulatory mechanisms of tau protein in the process of ischemic stroke. Thirdly, we discussed about the findings in therapeutic researches of ischemic stroke. This review may be helpful in implementing new therapies for ischemic stroke and may be beneficial for the clinical and experimental studies.Entities:
Keywords: ischemic stroke; phosphorylation; tau; therapy
Year: 2019 PMID: 31841442 PMCID: PMC6949092 DOI: 10.18632/aging.102547
Source DB: PubMed Journal: Aging (Albany NY) ISSN: 1945-4589 Impact factor: 5.682
Figure 1(A) Structure of human tau protein; Tau has an N-terminao projection region, a proline-rich domain(PRD), a microtubule-binding domain(MBD), and a C-terminal region. (B) Six isoforms of human tau. They differ by the inclusion of exon 2(NI), exon 3(N2), and exonlO(RI-R4).
Figure 2(A) Biological function of tau protein. (B) Pathological role of tau protein.
Patterns of Tau Phosphorylation in Brain after Ischemic Stroke
| Bi M 2017 [ | Mice | Focal cerebral ischemia model | 90min/ 30min | The cortex in the ischemic area | Tau | N | Reduce tau protein-dependent excitotoxicity in tau–/– mice |
| Basurto IG 2018 [ | Mice | Focal cerebral ischemia model | 1 hour | The ischemic core | Hyperphosphorylation | Ser262/356 | Hyperphosphorylation involving asparagine endopeptidase |
| Khan S 2018 [ | Mice | Global cerebral ischemia model | 10,15,18min | The hippocampus and the cortex | Paired helical filament tau protein increase | Ps396/404 | Lead to neuronal death |
| Liao G 2009 [ | Mice | Right common carotid artery was occluded and hypoxia was maintained | 40 min | The ischemic core | A marked decrease in tau phosphorylation | P301L | Extracellular glutamate accumulation |
| Tuo QZ 2017 [ | Mice/ Rats | Focal cerebral ischemia model | Mice:60min Rats:90min | The lesioned hemisphere | Tau | N | Dysfunctional or absent tau protein contributes to iron-mediated neurotoxicity |
| Dewar D 1995 [ | Rats | Focal cerebral ischemia model | 2-6hours | The cortex in the ischemic area | Dephosphorylated and/or degraded | Tau 1 | Breakdown of the cytoskeleton in ischemic region of the neuron |
| Geddes JW 1994 [ | Rats | Complete cerebral ischemia model | 20 min | The hippocampal formation | Dephosphorylated | Tau 1 | Compromises the ability of the neuron to remove Elevated intracellular Ca2+ |
| Shackelford DA,1998 [ | Rats | Complete cerebral ischemia model | 5-15min | The hippocampus, neocortex and striatum | Dephosphorylated | Ps396/404 | Possibly contributing to disruption of axonal transport |
| Wen Y 2004 [ | Rats | Focal cerebral ischemia model | 1 hour | The cortex in the ischemic area | Hyperphosphorylation | PT181, pS202, pT205, pT212, pS214, pT231, pS262, pS396, pS404, and pS422 | Destabilize neuronal cytoskeleton, and may contribute to the Apoptotic process |
| Wen Y 2004 [ | Rats | Focal cerebral ischemia model | 1 hour | The cortex in the ischemic area | Hyperphosphorylation | MC1 and TG3 (phospho-tau 231/ 235); phosphorylated tau epitopes: CP13 (phospho- tau 202/205), CP3 (phospho-tau 214), PHF-1 (phospho-tau 396/ 404), and CP9 (phospho-tau 231) | Involved in the progression of Neuropathology in AD |
| Kovalska M 2018 [ | Rats | Global cerebral ischemia model | 15min | The cortex in the ischemic area | Hyperphosphorylation | Ser202, Thr205 | Degeneration of cortical neurons, alterations in number and morphology of tissue astrocytes and dysregulation of Oxidative balance |
| Fujii H 2017 [ | Rats | Focal cerebral ischemia model | 90 mins | The ischemic core | Hyperphosphorylation | Asp421-truncated tau | Influence microtubule stability and Subsequently disturb axonal transport, resulting in the formation of axonal varicosities and other axonal abnormalities |
| Wen Y 2007 [ | Rats | Focal cerebral ischemia model | 1 hour | The cortex in the ischemic area | Hyperphosphorylation and neurofibrillary tangle (NFT) like conformations | P-396/404 | Involved in the progression of neuropathology in AD |
| Majd S 2016 [ | Rats | Global cerebral ischemia model | 8 mins | Parietal cortical and subcortical hippocampus homogenates | Phosphorylation/ dephosphorylation | Ser(396) and Ser(262), Ser(202) /Thr(205) (AT8) | Dephosphorylation of AMPK followed the same pattern as tau dephosphorylation during ischemia or reperfusion |
| Whitehead SN,2005 [ | Rats | Subcortical Lacunar infarcts by striatal endothelin injections | N | Hippocampus | Neurofibrillary tangles and senile plaques to form | Tau 2 | Mediating neurotoxic and neuroinflammatory |
| Morioka M 2006 [ | Gerbils | Global forebrain ischemia model | 5 mins | Hippocampal region | Hyperphosphorylation | Serine 199/202 | Induced by MAP kinase, CDK5, and GSK3, and contributes to ischemic neuronal injury |
| Gordon KW 2007 [ | Gerbils | Global forebrain ischemia model | 5 mins | The cortex in the ischemic area | Hyperphosphorylation | Tau 1 | May caused by oxidative stress |
| Mailliot C 2000 [ | Dogs | Cardiac arrest -induced global cerebral ischemia | 10mins | The ischemic core | Dephosphorylation, differential and re-phosphorylation | Ser262/356 | Monitor neuronal integrity after brain ischemia |
| Burkhart KK 1998 [ | Rats/Human | Complete cerebral ischemia model Neocortical brain slices | 5mins/ 30mins | The cortex in the ischemic area | Dephosphorylation and an apparent recovery in phosphorylated tau | Tau 1 | Dephosphorylated tau may enhance Microtubule stability |
| Uchihara T 2004 [ | Human | Ischemic stroke | N | The cortex in the ischemic area | Hyperphosphorylation | Ser101 | Microglia tau protein passes independent of phosphorylation modification |
| Kato T 1988 [ | Human | Ischemic stroke | N | The cortex in the ischemic area | Neurofibrillary tangle formation | Tau 1 | These cases may represent an initial stage of senile changes |