PTP1B inhibition promotes microglial phagocytosis in Alzheimer's disease models by enhancing SYK signaling

Cen, Yuxin, R Alves, Steven, Song, Dongyan, Felice, Christy, Preall, Jonathan B, Van Aelst, Linda, Tonks, Nicholas K (February 2026) PTP1B inhibition promotes microglial phagocytosis in Alzheimer's disease models by enhancing SYK signaling. Proceedings of the National Academy of Sciences of the United States of America, 123 (6). e2521944123. ISSN 0027-8424

Abstract

Amyloid β (Aβ) accumulation is a hallmark of Alzheimer's disease (AD). Emerging evidence suggests that impaired microglial Aβ phagocytosis is a key feature in AD, highlighting the therapeutic potential of enhancing this innate immune function. Here, we demonstrate that genetic deletion or pharmacological inhibition of protein tyrosine phosphatase 1B (PTP1B) ameliorated memory deficits and reduced Aβ burden in APP/PS1 mice. Moreover, we show that PTP1B was highly expressed in microglia, and its deficiency promoted a transcriptional shift toward immune activation and phagocytosis. Consistently, PTP1B deletion in microglia enhanced phagocytosis and energy metabolism, supported by increased AKT-mTOR signaling, a pathway essential for meeting the energy demands of activation. Mechanistically, we identified spleen tyrosine kinase (SYK), a key regulator of microglial phagocytosis, as a direct substrate of PTP1B. Inhibition of SYK showed that PTP1B modulates microglial activation in a SYK-dependent manner. These findings established PTP1B as a critical modulator of microglial activation and a potential therapeutic target for AD.

Item Type: Paper
Subjects: bioinformatics
bioinformatics > genomics and proteomics > design
bioinformatics > genomics and proteomics
bioinformatics > genomics and proteomics > genetics & nucleic acid processing > protein structure, function, modification
bioinformatics > genomics and proteomics > genetics & nucleic acid processing > protein structure, function, modification > protein types > enzymes
bioinformatics > genomics and proteomics > genetics & nucleic acid processing > protein structure, function, modification > protein types
bioinformatics > genomics and proteomics > genetics & nucleic acid processing > protein structure, function, modification > protein types > enzymes > protein tyrosine phosphatase
CSHL Authors:
Communities: CSHL labs > Preall lab
CSHL labs > Tonks lab
CSHL labs > Van Aelst lab
CSHL Cancer Center Program > Cellular Communication in Cancer Program
SWORD Depositor: CSHL Elements
Depositing User: CSHL Elements
Date: 10 February 2026
Date Deposited: 11 Feb 2026 15:27
Last Modified: 11 Feb 2026 15:27
PMCID: PMC12875655
Related URLs:
URI: https://repository.cshl.edu/id/eprint/42070

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