Literature DB >> 14625305

Identification of sites responsible for potentiation of type 2.3 calcium currents by acetyl-beta-methylcholine.

Ganesan L Kamatchi1, Ruthie Franke, Carl Lynch, Julianne J Sando.   

Abstract

To address mechanisms for the differential sensitivity of voltage-gated Ca2+ channels (Cav) to agonists, channel activity was compared in Xenopus oocytes coexpressing muscarinic M(1) receptors and different Cav alpha1 subunits, all with beta1B,alpha2/delta subunits. Acetyl-beta-methylcholine (MCh) decreased Cav 1.2c currents, did not affect 2.1 or 2.2 currents, but potentiated Cav 2.3 currents. Phorbol 12-myristate 13-acetate (PMA) did not affect Cav 1.2c or 2.1 currents but potentiated 2.2 and 2.3 currents. Comparison of the amino acid sequences of the alpha1 subunits revealed a set of potential protein kinase C phosphorylation sites in common between the 2.2 and 2.3 channels that respond to PMA and a set of potential sites unique to the alpha1 2.3 subunits that respond to MCh. Quadruple Ser --> Ala mutation of the predicted MCh sites in the alpha1 2.3 subunit (Ser-888, Ser-892, and Ser-894 in the II-III linker and Ser-1987 in the C terminus) caused loss of the MCh response but not the PMA response. Triple Ser --> Ala mutation of just the II-III linker sites gave similar results. Ser-888 or Ser-892 was sufficient for the MCh responsiveness, whereas Ser-894 required the presence of Ser-1987. Ser --> Asp substitution of Ser-888, Ser-892, Ser-1987, and Ser-892/Ser-1987 increased the basal current and decreased the MCh response but did not alter the PMA response. These results reveal that sites unique to the II-III linker of alpha1 2.3 subunits mediate the responsiveness of Cav 2.3 channels to MCh. Because Cav 2.3 channels contribute to action potential-induced Ca2+ influx, these sites may account for M1 receptor-mediated regulation of neurotransmission at some synapses.

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Year:  2003        PMID: 14625305     DOI: 10.1074/jbc.M308606200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  6 in total

1.  Contribution of protein kinase Cα in the stimulation of insulin by the down-regulation of Cavβ subunits.

Authors:  Senthilkumar Rajagopal; Blanche L Fields; Ganesan L Kamatchi
Journal:  Endocrine       Date:  2014-01-23       Impact factor: 3.633

2.  Protein kinase C isozyme-specific potentiation of expressed Ca v 2.3 currents by acetyl-beta-methylcholine and phorbol-12-myristate, 13-acetate.

Authors:  Senthilkumar Rajagopal; Hongyu Fang; Saharat Patanavanich; Julianne J Sando; Ganesan L Kamatchi
Journal:  Brain Res       Date:  2008-03-20       Impact factor: 3.252

3.  Molecular and biophysical basis of glutamate and trace metal modulation of voltage-gated Ca(v)2.3 calcium channels.

Authors:  Aleksandr Shcheglovitov; Iuliia Vitko; Roman M Lazarenko; Peihan Orestes; Slobodan M Todorovic; Edward Perez-Reyes
Journal:  J Gen Physiol       Date:  2012-03       Impact factor: 4.086

4.  Dual Regulation of R-Type CaV2.3 Channels by M1 Muscarinic Receptors.

Authors:  Jin-Young Jeong; Hae-Jin Kweon; Byung-Chang Suh
Journal:  Mol Cells       Date:  2016-02-26       Impact factor: 5.034

Review 5.  Cav3 T-Type Voltage-Gated Ca2+ Channels and the Amyloidogenic Environment: Pathophysiology and Implications on Pharmacotherapy and Pharmacovigilance.

Authors:  Anna Papazoglou; Muhammad Imran Arshaad; Christina Henseler; Johanna Daubner; Karl Broich; Jürgen Hescheler; Dan Ehninger; Britta Haenisch; Marco Weiergräber
Journal:  Int J Mol Sci       Date:  2022-03-22       Impact factor: 5.923

6.  How "Pharmacoresistant" is Cav2.3, the Major Component of Voltage-Gated R-type Ca2+ Channels?

Authors:  Toni Schneider; Maxine Dibué; Jürgen Hescheler
Journal:  Pharmaceuticals (Basel)       Date:  2013-05-27
  6 in total

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