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      Mechanism of P2X7 receptor-dependent enhancement of neuromuscular transmission in pannexin 1 knockout mice

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          Abstract

          P2X7 receptors are present in presynaptic membranes of motor synapses, but their regulatory role in modulation of neurotransmitter release remains poorly understood. P2X7 receptors may interact with pannexin 1 channels to form a purinergic signaling unit. The potential mechanism of P2X7 receptor-dependent modulation of acetylcholine (ACh) release was investigated by recording miniature endplate potentials (MEPPs) and evoked endplate potentials (EPPs) in neuromuscular junctions of wild-type (WT) and pannexin 1 knockout (Panx1 −/−) mice. Modulation of P2X7 receptors with the selective inhibitor A740003 or the selective agonist BzATP did not alter the parameters of either spontaneous or evoked ACh release in WT mice. In Panx1 −/− mice, BzATP-induced activation of P2X7 receptors resulted in a uniformly increased quantal content of EPPs during a short stimulation train. This effect was accompanied by an increase in the size of the readily releasable pool, while the release probability did not change. Inhibition of calmodulin by W-7 or of calcium/calmodulin-dependent kinase II (CaMKII) by KN-93 completely prevented the potentiating effect of BzATP on the EPP quantal content. The blockade of L-type calcium channels also prevented BzATP action on evoked synaptic activity. Thus, the activation of presynaptic P2X7 receptors in mice lacking pannexin 1 resulted in enhanced evoked ACh release. Such enhanced release was provoked by triggering the calmodulin- and CaMKII-dependent signaling pathway, followed by activation of presynaptic L-type calcium channels. We suggest that in WT mice, this pathway is downregulated due to pannexin 1-dependent tonic activation of inhibitory presynaptic purinergic receptors, which overcomes P2X7-mediated effects.

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          Author and article information

          Contributors
          gaydukov@gmail.com
          Journal
          Purinergic Signal
          Purinergic Signal
          Purinergic Signalling
          Springer Netherlands (Dordrecht )
          1573-9538
          1573-9546
          25 October 2018
          December 2018
          : 14
          : 4
          : 459-469
          Affiliations
          [1 ] ISNI 0000 0001 2342 9668, GRID grid.14476.30, Department of Human and Animal Physiology, , Lomonosov Moscow State University, ; Leninskie gory 1/12, Moscow, 119991 Russia
          [2 ] ISNI 0000 0000 9559 0613, GRID grid.78028.35, Department of Physiology, , Russian National Research Medical University, ; Ostrovitjanova 1, Moscow, 117997 Russia
          [3 ] ISNI 0000 0004 1936 8606, GRID grid.26790.3a, Department of Ophthalmology, Bascom Palmer Eye Institute, , University of Miami Miller School of Medicine, ; 900 NW 10 Ave, Miami, FL 33136 USA
          [4 ] ISNI 0000 0001 2192 9124, GRID grid.4886.2, Vavilov Institute of General Genetics, , Russian Academy of Sciences, ; Gubkin str. 3, Moscow, 119991 Russia
          Author information
          http://orcid.org/0000-0003-1963-1382
          Article
          PMC6298918 PMC6298918 6298918 9630
          10.1007/s11302-018-9630-7
          6298918
          30362043
          a8e5b549-3dfc-4e94-b8d1-6084642b6c7e
          © Springer Nature B.V. 2018
          History
          : 5 July 2018
          : 2 October 2018
          Funding
          Funded by: FundRef http://dx.doi.org/10.13039/501100002261, Russian Foundation for Basic Research;
          Award ID: 18-34-00189
          Funded by: FundRef http://dx.doi.org/10.13039/100000002, National Institutes of Health;
          Award ID: EY R01-021517
          Award ID: P30 EY014801
          Categories
          Original Article
          Custom metadata
          © Springer Nature B.V. 2018

          L-type calcium channels,CaMKII,Pannexin 1,Neuromuscular junction,P2X7 receptors

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