AKAP11 links autophagy to cognitive impairment in psychiatric diseases

Schizophrenia (SCZ) and bipolar disorder (BD) share genetic risk factors and cognitive impairments, yet the underlying mechanisms remain incompletely understood. Loss-of-function variants in AKAP11 (A-kinase anchoring protein 11) have recently emerged as major risk factors for both disorders. Our recent study demonstrates that AKAP11 deficiency in the mouse hippocampus causes cognitive deficits and synaptic dysfunction, accompanied by autophagy dysregulation. Mechanistically, AKAP11 interacts with PPP3CB (protein phosphatase 3 catalytic subunit beta) to promote TFEB (transcription factor EB) dephosphorylation and nuclear translocation, thereby sustaining autophagy-lysosomal gene expression. AKAP11 knockout cells display impaired autophagy initiation, reduced lysosomal activity, and compromised autophagic flux. Therapeutically, pharmacological activation of TFEB rescues cognitive deficits in Akap11-deficient mice. These findings position AKAP11 as a critical regulator of TFEB-mediated autophagy and suggest that enhancing autophagy-lysosomal function may represent a therapeutic strategy for SCZ and BD.

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Publication Details

Journal
Autophagy
Published
2026-09-01
DOI
https://doi.org/10.1080/15548627.2026.2709295
Primary Topic
Autophagy in Disease and Therapy
Type
article
Field-Weighted Citation Impact
0.00

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article

AKAP11 links autophagy to cognitive impairment in psychiatric diseases

Zhenyu Yue, 阚燠轩, Min Li, Zhiqiang Deng
Autophagy
Autophagy in Disease and Therapy
article

AKAP11 links autophagy to cognitive impairment in psychiatric diseases

Zhenyu Yue, 阚燠轩, Min Li, Zhiqiang Deng
article en

Abstract

Schizophrenia (SCZ) and bipolar disorder (BD) share genetic risk factors and cognitive impairments, yet the underlying mechanisms remain incompletely understood. Loss-of-function variants in AKAP11 (A-kinase anchoring protein 11) have recently emerged as major risk factors for both disorders. Our recent study demonstrates that AKAP11 deficiency in the mouse hippocampus causes cognitive deficits and synaptic dysfunction, accompanied by autophagy dysregulation. Mechanistically, AKAP11 interacts with PPP3CB (protein phosphatase 3 catalytic subunit beta) to promote TFEB (transcription factor EB) dephosphorylation and nuclear translocation, thereby sustaining autophagy-lysosomal gene expression. AKAP11 knockout cells display impaired autophagy initiation, reduced lysosomal activity, and compromised autophagic flux. Therapeutically, pharmacological activation of TFEB rescues cognitive deficits in Akap11-deficient mice. These findings position AKAP11 as a critical regulator of TFEB-mediated autophagy and suggest that enhancing autophagy-lysosomal function may represent a therapeutic strategy for SCZ and BD.

Autophagy
Hong Kong Baptist University (HK), Icahn School of Medicine at Mount Sinai (US)
Hong Kong Baptist University, National Natural Science Foundation of China, Natural Science Foundation of Guangdong Province, Health and Medical Research Fund
Good health and well-being
Openalex Percentile: Top 11%
Autophagy in Disease and Therapy
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AKAP11 links autophagy to cognitive impairment in psychiatric diseases — Zhenyu Yue, 阚燠轩, et al. · Autophagy (2026) | TGRS Research Map | TGRS