Isoform-specific patterns of tau burden and neuronal degeneration in MAPT-associated frontotemporal lobar

Lucia A A Giannini1, Daniel T Ohm2,3, Annemieke J M Rozemuller4

  • 1Alzheimer Center, Department of Neurology, Erasmus University Medical Center, Doctor Molewaterplein 40, 3015 GD, Rotterdam, The Netherlands.

Acta Neuropathologica
|September 6, 2022
PubMed

Insights

Frontotemporal lobar degeneration with MAPT variants shows distinct tau pathology patterns. Three-repeat (3R) tau causes less burden but more degeneration than four-repeat (4R) tau, with both sharing anterior temporal vulnerability.

Area of Science:

  • Neuroscience
  • Neuropathology
  • Genetics

Background:

  • Frontotemporal lobar degeneration with MAPT pathogenic variants (FTLD-MAPT) presents heterogeneous tau pathology.
  • Tau inclusions can be three-repeat (3R), four-repeat (4R), or mixed (3R+4R).

Purpose of the Study:

  • To investigate grey matter tau burden, neuronal degeneration, and regional pathology patterns in FTLD-MAPT.
  • To compare these features across different tau isoform groups.

Main Methods:

  • Studied 38 FTLD-MAPT autopsy cases with 10 MAPT variants.
  • Quantified grey matter tau burden and neuronal degeneration in up to eleven brain regions using digital histopathology.
  • Employed mixed modeling to compare pathology measures across the cohort and within isoform groups.

Main Results:

  • Tau burden and neuronal degeneration were positively associated, most severe in anterior temporal, cingulate, and transentorhinal cortices.
  • The 3R isoform group showed lower tau burden but more severe neuronal degeneration than the 4R group (p=0.008 and p=0.002, respectively).
  • The 3R+4R group exhibited an intermediate profile; neuronal degeneration was consistently most severe in the anterior temporal cortex across all groups.

Conclusions:

  • FTLD-MAPT isoform groups display distinct tau burden and degeneration patterns.
  • All groups share pronounced anterior temporal neuronal degeneration.
  • These findings suggest divergent, isoform-related mechanisms in genetic tauopathies that converge on shared regional vulnerability.