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Appears in Networks 1

In-Edges 3

act(complex(GO:"protein phosphatase type 2A complex")) negativeCorrelation p(HGNC:SET, frag("?")) View Subject | View Object

Up-regulation of I1 PP2A and I2 PP2A, and mislocalization and cleavage of I2 PP2A, could underlie the inactivation of PP2A in AD neocortical neurons (Tanimukai et al.,2005). PubMed:24653673

path(MESH:"Alzheimer Disease") positiveCorrelation p(HGNC:SET, frag("?")) View Subject | View Object

Up-regulation of I1 PP2A and I2 PP2A, and mislocalization and cleavage of I2 PP2A, could underlie the inactivation of PP2A in AD neocortical neurons (Tanimukai et al.,2005). PubMed:24653673

Out-Edges 3

p(HGNC:SET, frag("?")) positiveCorrelation path(MESH:"Alzheimer Disease") View Subject | View Object

Up-regulation of I1 PP2A and I2 PP2A, and mislocalization and cleavage of I2 PP2A, could underlie the inactivation of PP2A in AD neocortical neurons (Tanimukai et al.,2005). PubMed:24653673

p(HGNC:SET, frag("?")) increases path(MESH:"Alzheimer Disease") View Subject | View Object

Moreover, expression of an I2 PP2A fragment can recapitulate AD-like pathology in rat brain (Wang et al.,2010). PubMed:24653673

p(HGNC:SET, frag("?")) negativeCorrelation act(complex(GO:"protein phosphatase type 2A complex")) View Subject | View Object

Up-regulation of I1 PP2A and I2 PP2A, and mislocalization and cleavage of I2 PP2A, could underlie the inactivation of PP2A in AD neocortical neurons (Tanimukai et al.,2005). PubMed:24653673

About

BEL Commons is developed and maintained in an academic capacity by Charles Tapley Hoyt and Daniel Domingo-Fernández at the Fraunhofer SCAI Department of Bioinformatics with support from the IMI project, AETIONOMY. It is built on top of PyBEL, an open source project. Please feel free to contact us here to give us feedback or report any issues. Also, see our Publishing Notes and Data Protection information.

If you find BEL Commons useful in your work, please consider citing: Hoyt, C. T., Domingo-Fernández, D., & Hofmann-Apitius, M. (2018). BEL Commons: an environment for exploration and analysis of networks encoded in Biological Expression Language. Database, 2018(3), 1–11.