| Literature DB >> 28367114 |
Nicole M Maphis1, Shanya Jiang1, Jessica Binder1, Carrie Wright2, Banu Gopalan3, Bruce T Lamb4, Kiran Bhaskar1.
Abstract
Increasing evidence suggests that hyperphosphorylation and aggregation of microtubule-associated protein tau (MAPT or tau) correlates with the development of cognitive impairment in Alzheimer's disease (AD) and related tauopathies. While numerous attempts have been made to model AD-relevant tau pathology in various animal models, there has been very limited success for these models to fully recapitulate the progression of disease as seen in human tauopathies. Here, we performed whole genome gene expression in a genomic mouse model of tauopathy that expressed human MAPT gene under the control of endogenous human MAPT promoter and also were complete knockout for endogenous mouse tau [referred to as 'hTau MaptKO(Duke)' mice]. First, whole genome expression analysis revealed 64 genes, which were differentially expressed (32 up-regulated and 32 down-regulated) in the hippocampus of 6-month-old hTau MaptKO(Duke) mice compared to age-matched non-transgenic controls. Genes relevant to neuronal function or neurological disease include up-regulated genes: PKC-alpha (Prkca), MECP2 (Mecp2), STRN4 (Strn4), SLC40a1 (Slc40a1), POLD2 (Pold2), PCSK2 (Pcsk2), and down-regulated genes: KRT12 (Krt12), LASS1 (Cers1), PLAT (Plat), and NRXN1 (Nrxn1). Second, network analysis suggested anatomical structure development, cellular metabolic process, cell death, signal transduction, and stress response were significantly altered biological processes in the hTau MaptKO(Duke) mice as compared to age-matched non-transgenic controls. Further characterization of a sub-group of significantly altered genes revealed elevated phosphorylation of MECP2 (methyl-CpG-binding protein-2), which binds to methylated CpGs and associates with chromatin, in hTau MaptKO(Duke) mice compared to age-matched controls. Third, phoshpho-MECP2 was elevated in autopsy brain samples from human AD compared to healthy controls. Finally, siRNA-mediated knockdown of MECP2 in human tau expressing N2a cells resulted in a significant decrease in total and phosphorylated tau. Together, these results suggest that MECP2 is a potential novel regulator of tau pathology relevant to AD and tauopathies.Entities:
Keywords: Alzheimer’s disease; MECP2; methyl-CpG-binding protein-2; microarray; tau protein; tau transgenic mice; tauopathies
Year: 2017 PMID: 28367114 PMCID: PMC5355442 DOI: 10.3389/fnmol.2017.00069
Source DB: PubMed Journal: Front Mol Neurosci ISSN: 1662-5099 Impact factor: 5.639
Sample description.
| Sample # | Sample name | Sample description | Sex | Sample group | Sentrix ID | Sentrix position |
|---|---|---|---|---|---|---|
| 1 | WT1 | 6-month-old WT | M | NM052412A | 6189772009 | A |
| 2 | WT2 | 6-month-old WT | F | NM052412B | 6189772009 | B |
| 3 | WT3 | 6-month-old WT | F | NM052412C | 6189772009 | C |
| 4 | hTau1 | 6-month-old hTau | F | NM052412D | 6189772009 | D |
| 5 | hTau2 | 6-month-old hTau | F | NM052412E | 6189772009 | E |
| 6 | hTau3 | 6-month-old hTau | M | NM052412F | 6189772009 | F |
Conditions and samples distribution.
| WT | 1 | 2 | 3 |
| hTau | 4 | 5 | 6 |
Description of gene selection for pathway analysis.
| Total genes studied | 30,854 |
| QC filtered genes | 11,618 |
| Significantly altered [all are down-regulated in hTau | 4 ( |
| Genes after relaxing the statistical criteria (Raw | 64 |
| Number of genes used for GO, IPATM, MetacoreTM studies | 62 (2 were obsolete) |