Wang Lijun, Henrich Michael, Buckler Keith J, McMenamin Mary, Mee Christopher J, Sattelle David B, Paterson David J
Burdon Sanderson Cardiac Science Centre, Department of Physiology, Anatomy and Genetics, Sherrington Building, Parks Road, Oxford, UK.
J Mol Cell Cardiol. 2007 Dec;43(6):717-25. doi: 10.1016/j.yjmcc.2007.09.005. Epub 2007 Sep 19.
Gene transfer of neuronal nitric oxide synthase (nNOS) can decrease cardiac sympathetic outflow and facilitate parasympathetic neurotransmission. The precise pathway responsible for nitric oxide (NO) mediated inhibition of sympathetic neurotransmission is not known, but may be related to NO-cGMP activation of cGMP-stimulated phosphodiesterase (PDE2) that enhances the breakdown of cAMP to deactivate protein kinase A (PKA), resulting in a decrease in Ca(2+) influx mediated exocytosis of the neurotransmitter. We investigated depolarization evoked Ca(2+) influx in nNOS gene transduced sympathetic neurons from stellate ganglia with a noradrenergic cell specific vector (Ad.PRS-nNOS or empty vector), and examined how nNOS gene transfer affected cAMP and cGMP levels in these neurons. We found that targeting nNOS into these sympathetic neurons reduced amplitudes of voltage activated Ca(2+) transients by 44%. nNOS specific inhibition by N-[(4S)-4-Amino-5-[(2-aminoetyl](amino] pentyl]-N'-nitroguanidine (AAAN) reversed this response. nNOS gene transfer also increased intracellular cGMP (47%) and decreased cAMP (29%). A PDE2 specific inhibitor Bay60-7557 reversed the reduction in cAMP caused by Ad.PRS-nNOS. These results suggest that neuronal NO modulates cGMP and PDE2 to regulate voltage gated intracellular Ca(2+) transients in sympathetic neurons. Therefore, we propose this as a possible key step involved in NO decreasing cardiac sympathetic neurotransmission.
神经元型一氧化氮合酶(nNOS)的基因转移可减少心脏交感神经输出并促进副交感神经传递。负责一氧化氮(NO)介导的交感神经传递抑制的确切途径尚不清楚,但可能与cGMP刺激的磷酸二酯酶(PDE2)的NO-cGMP激活有关,该酶增强cAMP的分解以失活蛋白激酶A(PKA),导致神经递质Ca(2+)内流介导的胞吐作用减少。我们用去甲肾上腺素能细胞特异性载体(Ad.PRS-nNOS或空载体)研究了nNOS基因转导的星状神经节交感神经元中去极化诱发的Ca(2+)内流,并研究了nNOS基因转移如何影响这些神经元中的cAMP和cGMP水平。我们发现,将nNOS靶向这些交感神经元可使电压激活的Ca(2+)瞬变幅度降低44%。N-[(4S)-4-氨基-5-(2-氨基乙基瞬变。因此,我们认为这是NO减少心脏交感神经传递过程中可能的关键步骤。