PKC and Ras are Involved in M1 Muscarinic Receptor-Mediated Modulation of AMPA Receptor GluA1 Subunit

Mu-Wen Chen1, Han Zhu1, Cai-Hong Xiong1

  • 1Department of Pharmacology and Chemical Biology, Institute of Medical Sciences, Shanghai Jiao Tong University School of Medicine, 280 South Chongqing Road, Shanghai, 200025, China.

Insights

Targeting M1 muscarinic acetylcholine receptors (M1 mAChRs) for Alzheimer's disease (AD) requires understanding their signaling. This study reveals protein kinase C (PKC) and Ras are crucial for M1 mAChR-mediated memory enhancement via GluA1 modulation.

Area of Science:

  • Neuroscience
  • Pharmacology
  • Molecular Biology

Background:

  • M1 muscarinic acetylcholine receptors (M1 mAChRs) are a promising therapeutic target for Alzheimer's disease (AD).
  • Previous research indicated M1 mAChR-mediated memory improvement involves the PKA-PI3K-Akt pathway modulating the GluA1 subunit.
  • However, the roles of protein kinase C (PKC) and Ras in this pathway remained unclear.

Purpose of the Study:

  • To investigate the involvement of PKC and Ras in M1 mAChR-mediated modulation of the AMPA receptor subunit GluA1.
  • To elucidate the detailed downstream signaling mechanisms of M1 mAChR activation.

Main Methods:

  • Utilized primary cultured neurons and in vivo hippocampus models.
  • Employed specific inhibitors for PKC (Ro-31-8425, Gö6983) and Ras (salirasib).
  • Assessed membrane insertion and phosphorylation of GluA1 at Ser845, and activities of PKA, Akt, and mTOR.

Main Results:

  • PKC and Ras inhibitors blocked M1 mAChR-induced GluA1 membrane insertion and Ser845 phosphorylation.
  • PKC and Ras inhibition also prevented M1 mAChR-mediated increases in PKA, Akt, and mTOR activity.
  • These findings confirm the involvement of PKC and Ras in the M1 mAChR-Gαq/11 signaling pathway.

Conclusions:

  • PKC and Ras are essential components of the M1 mAChR signaling cascade that enhances memory.
  • This study details the mechanism of M1 mAChR-mediated GluA1 modulation through Gαq/11 coupling.
  • Understanding this pathway offers insights for developing targeted therapies for AD.

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