| Literature DB >> 26227811 |
Long Wang1, Shanshan Cheng1, Zhenyu Yin2, Congyu Xu1, Shuangshuang Lu1, Jinxing Hou1, Tingting Yu2, Xiaolei Zhu3, Xiaoyan Zou1, Ying Peng4, Yun Xu5, Zhongzhou Yang6, Guiquan Chen7.
Abstract
BACKGROUND: Tau hyperphosphorylation plays a critical role in neurodegenerative diseases [EMBO Mol Med. 6:1142-60, 2014; Annu Rev Neurosci. 24:1121-59, 2001]. Recent evidence has shown that Akt is down-regulated in AD [J Pathol. 225:54-62, 2011]. However, it remained unknown which pathological process, e.g. tau pathology or neuron death, Akt may contribute to. In this study, Cre-loxP technique was employed to generate a viable Akt three isoforms conditional knockout (Akt cTKO) mouse in which total Akt levels were dramatically reduced in the adult brain.Entities:
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Year: 2015 PMID: 26227811 PMCID: PMC4521471 DOI: 10.1186/s13024-015-0030-y
Source DB: PubMed Journal: Mol Neurodegener ISSN: 1750-1326 Impact factor: 14.195
Fig. 1Tau hyperphosphorylation in the brain of Akt cTKO mice. a Western blotting of p-tau using cortical and cerebellar samples. Antibodies against tau phosphorylated at the Thr205, Thr231 and Ser396 epitopes were used. The migration of three p-tau bands (60 kDa, 64 kDa and 68 kDa) in SDS gels was slower in Akt cTKO (Akt1 ;Akt2 ;Akt3 ;CAG-CreER with tamoxifen treatment) than in control mice (Akt1 ;Akt2 ;Akt3 and Akt1 ;Akt2 ;Akt3 ). Intensities of the p-tau bands were dramatically increased in Akt cTKO mice. Tau5 antibody was used to detect total tau (t-tau). b Immunohistochemistry of p-tauThr205 in the brain. Strong immuno-reactivity of p-tauThr205 was seen in the cortex (e), hippocampal CA3 (f), the hilus of the dentate gyrus (g) and the cerebellum (h) of Akt cTKO mice. Weak immuno-reactivity of p-tauThr205 was observed in different brain sub-areas of control mice (a-d)
Fig. 2Unchanged levels of p-tau in Akt single isoform KO mice. a Nissl staining for the brain of Akt1 −/− mice. Normal brain structure was observed. b Western analyses on p-tau levels using cortical samples of Akt1 −/− mice. There was no significant difference on relative levels of p-tauThr205, p-tauThr231 and p-tauSer396 in Akt1 −/− mice. c Nissl staining for the brain of Akt2 −/− mice. No abnormal brain structure was detected. d Western analyses on p-tau levels using cortical samples of Akt2 −/− mice revealed no significant difference. e Nissl staining for the brain of Akt3 −/− mice. There was a smaller brain in Akt3 −/− mice than in WT animals. f Western analyses on p-tau levels showed no significant difference in Akt3 −/− mice (NS = not significant)
Fig. 3Increased levels for an activated form of GSK3α in the brain of Akt cTKO mice. a Western blotting on activated forms of GSK3α and GSK3β. Quantitative analysis showed significantly increased levels for p-GSK3αTyr279 (*, p < 0.05) but unchanged levels for p-GSK3βTyr216 (NS, p > 0.05) in Akt cTKO mice. b Western blotting on p-Cdk5, p35 and p25. Relative levels for p-Cdk5Ser159 were significantly increased (*, p < 0.05), but those for p25 were significantly decreased (*, p < 0.05) in the cortex of Akt cTKO mice. GAPDH served as the loading control. c Western blotting on MAPK Erk1/2. Total Erk1/2 levels in Akt cTKO mice were not different from those in control mice. β-actin served as the loading control. Ratio of p-Erk1/2 to the total Erk1/2 in Akt cTKO mice was also not different from that in control mice (p > 0.05). d Western blotting on phosphorylated MAPK p38 (p-p38). Levels of total p38 did not differ between Akt cTKO and control mice (p > 0.05). Ratio of p-p38 to total p38 in Akt cTKO mice was not changed (NS = not significant)
Fig. 4Increased levels for phosphorylated PKA substrates in Akt cTKO mice. a Western blotting for phosphorylated PKA substrates using cortical samples of Akt cTKO mice. Levels for several phosphorylated PKA substrates with molecular weights at about 100 kDa, 60 kDa and 40 kDa were increased. b Western analyses on VASP and PKA subunits. P-VASP levels in Akt cTKO mice were highly increased but total VASP levels were not changed. Relative levels for PKA regulatory subunits, 1α and 1β, were not changed. GAPDH served as the loading control. c Western blotting on p-tauSer214 and p-tauSer356. Ratios of p-tau to total tau were significantly increased in Akt cTKO mice, as compared to control animals (*, p < 0.05)