Target intelligence / Profile preview

Microtubule-associated protein tau (phosphorylated at Serine 396) (pS396-tau)

Target
pS396-tau
Molecular classification
Microtubule-associated protein, Phosphoprotein, Intrinsically disordered protein
01

Overview

Microtubule-associated protein tau (MAPT) is a major microtubule-stabilizing protein found predominantly in the axons of neurons [1]. In its physiological state, tau regulates the stability of axonal microtubules, which are essential for intracellular transport and structural integrity [1]. However, in neurodegenerative diseases known as tauopathies, tau becomes hyperphosphorylated at various sites, including Serine 396 (S396) [2]. Phosphorylation at S396 is a hallmark of pathological tau; it reduces the protein's affinity for microtubules, leading to cytoskeletal instability and the formation of paired helical filaments (PHFs) [2]. These filaments eventually aggregate into neurofibrillary tangles (NFTs), which are strongly correlated with cognitive decline in Alzheimer's disease [2]. Therapeutic interventions targeting pS396-tau include active and passive immunotherapies, such as the vaccine ACI-35, which are designed to elicit an immune response against this specific phospho-epitope to clear toxic tau species [3, 4]. Additionally, small molecule inhibitors targeting kinases like Glycogen Synthase Kinase 3 beta (GSK-3β) aim to prevent the phosphorylation of tau at this site [5]. Targeting specific phosphorylated residues like S396 is intended to provide a more precise therapeutic approach, sparing the functional, non-phosphorylated tau required for normal neuronal health [3].

Other names
MAPTTau proteinp-tau396pS396-tauPhospho-tau (Ser396)Neurofibrillary tangle proteinPHF-tau
02

Mechanism of action

The mechanism of action involves the use of active or passive immunotherapy to target and clear tau species phosphorylated at Serine 396, thereby preventing the formation of neurotoxic aggregates and the spread of tau pathology [3, 4]. Alternatively, small molecule inhibitors target upstream kinases, such as GSK-3β, to reduce the phosphorylation of tau at this specific residue [5].

03

Biological functions

Microtubule stabilizationAxonal transportRegulation of microtubule dynamicsCytoskeletal organization
04

Disease associations

Alzheimer's diseaseFrontotemporal dementiaProgressive supranuclear palsyCorticobasal degenerationPick's diseaseChronic traumatic encephalopathy
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Safety considerations

Risk of meningoencephalitis or neuroinflammation associated with CNS immunotherapy [3]Potential for off-target effects with systemic kinase inhibitors [5]Challenges in achieving sufficient blood-brain barrier penetration for therapeutic antibodiesTheoretical risk of interfering with the physiological microtubule-stabilizing function of tau
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Interacting drugs

ACI-35 (JNJ-64041575)

4 more in the full profile.

07

Biomarkers

CSF p-tau396Plasma p-tau396Tau PET imaging (e.g., [18F]flortaucipir)Cognitive assessments (e.g., MMSE)

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