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PP2A (Redirect)

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PP2A

Overview

Protein Phosphatase 2A (PP2A) is a highly conserved serine/threonine phosphatase and one of the most abundant protein phosphatases in mammalian cells, comprising approximately 0.5-1% of total cellular protein. As a member of the phosphoprotein phosphatase (PPP) superfamily, PP2A functions as a critical negative regulator of protein phosphorylation events across diverse cellular processes. The enzyme exists as a multi-subunit complex with remarkable structural flexibility, allowing it to regulate hundreds of substrate proteins and participate in numerous signaling cascades relevant to neuronal homeostasis and degeneration.

Function/Biology

PP2A operates as a catalytic core enzyme that requires association with regulatory subunits to achieve substrate specificity and cellular localization. The canonical PP2A holoenzyme consists of three major components: the catalytic subunit (PP2Ac), the scaffolding A subunit (PP2A-A), and a variable regulatory B subunit. The B subunit family comprises multiple isoforms (B, B', B'', and B''') that determine substrate recognition and subcellular localization. This modular architecture enables PP2A to form distinct phosphatase complexes tailored for specific cellular compartments and signaling contexts.

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📊 Evidence Profile
Evidence Balance
+0%
Certainty
20%
Debates
0
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4
Outgoing
12
0 supporting 0 contradicting 0 neutral
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