Ser422 phosphorylation blocks human Tau cleavage by caspase-3: Biochemical implications to Alzheimer's Disease

Priya Sandhu1, Mansur Mohammad Naeem1, Chunyu Lu1

  • 1Interdisciplinary School of Health Sciences, Faculty of Health Science, U Ottawa, 451 Smyth Road, Ottawa, ON K1H 8M5, Canada.

Insights

Phosphorylating Serine 422 on human Tau protein prevents its cleavage by caspase-3, a key step in Alzheimer's Disease (AD) pathogenesis. This finding suggests targeting the kinase responsible for this phosphorylation could offer therapeutic benefits for AD.

Area of Science:

  • Neuroscience
  • Biochemistry
  • Molecular Biology

Background:

  • Proteolytic cleavage of human Tau (hTau) by caspase-3 at Asp421↓Ser422 is implicated in Alzheimer's Disease (AD) pathogenesis.
  • Phosphorylation of hTau, particularly at Ser422, is a potential regulatory event influencing its aggregation and cleavage.
  • Understanding the interplay between Tau phosphorylation and caspase-3 activity is crucial for developing AD therapeutics.

Purpose of the Study:

  • To investigate the in vitro effect of Ser422 phosphorylation on hTau cleavage by caspase-3.
  • To examine the kinetics of caspase-3 mediated hTau cleavage following Ser422 phosphorylation.
  • To assess the impact of caspase-3 inhibitors on hTau cleavage.

Main Methods:

  • Design and synthesis of hTau peptides encompassing the Asp421↓Ser422 cleavage site, including phospho-Ser422 and dextro-isomer analogs.
  • In vitro enzymatic assays using recombinant caspase-3 and synthesized peptides.
  • Analysis of peptide cleavage products using mass spectrometry and RP-HPLC.
  • Confirmation experiments with caspase-3 inhibitors (Ac-DQVD-aldehyde).

Main Results:

  • Phosphorylation of Ser422 rendered the hTau peptide completely resistant to caspase-3 cleavage.
  • Substitution of Asp421 with its dextro isomer also blocked cleavage, while dextro-Ser422 had minimal effect.
  • Caspase-3 inhibitor Ac-DQVD-aldehyde effectively blocked hTau peptide cleavage.
  • Dextro isomers of Ser422 and Asp421 altered cleavage kinetics.

Conclusions:

  • Ser422 phosphorylation is a critical determinant protecting hTau from caspase-3 cleavage.
  • The kinase responsible for Ser422 phosphorylation may play a protective role against Tau aggregation and AD progression.
  • Targeting this kinase could be a potential therapeutic strategy for AD.
  • Dextro-isomer substitutions provide insights into enzyme-substrate interactions relevant to therapeutic interventions.

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