Human genomic studies have identified protein-truncating variants in AKAP11 associated with both bipolar disorder (BD) and schizophrenia (SCZ), implicating a shared disease mechanism driven by loss-of-function. AKAP11, a protein kinase A (PKA) adaptor, plays a key role in degrading the PKA-RI complex through selective autophagy. However, the neuronal functions of AKAP11 and the impact of its loss-of-function remains largely uncharacterized. Through multi-omics approaches, cell biology, and electrophysiology analysis in mouse models and human induced neurons, we delineated a central role of AKAP11 in coupling PKA kinase network regulation to synaptic transmission. Loss of AKAP11 distorted compartment-specific PKA and GSK3α/β activities and impaired cellular functions that significantly overlap with pathways associated with BD and SCZ. Moreover, we identified interactions between AKAP11, the PKA-RI adaptor SPHKAP, and the ER-resident autophagy-related proteins VAPA/B, which co-adapt and mediate PKA-RI complex degradation in neurons. Notably, AKAP11 deficiency impaired neurotransmission, providing key insights into the mechanism underlying AKAP11-associated psychiatric diseases.
Bipolar and schizophrenia risk gene AKAP11 encodes an autophagy receptor coupling the regulation of PKA kinase network homeostasis to synaptic transmission.
双相情感障碍和精神分裂症风险基因 AKAP11 编码自噬受体,将 PKA 激酶网络稳态的调节与突触传递联系起来
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作者:Lee You-Kyung, Xiao Cong, Zhou Xiaoting, Wang Le, McReynolds Meghan G, Wu Zhiping, Purisic Eric, Kim Henry, Li Xianting, Pang Zhiping, Dai Jinye, Peng Junmin, Yang Nan, Yue Zhenyu
| 期刊: | Res Sq | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Mar 13 |
| doi: | 10.21203/rs.3.rs-6043477/v1 | 研究方向: | 神经科学 |
| 疾病类型: | 精神分裂症 | 信号通路: | Autophagy |
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