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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Regulation of the mechanosensitive cation channels by ATP and cAMP in leech neurons.
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Regulation of the mechanosensitive cation channels by ATP and cAMP in leech neurons.

机译:ATP和cAMP对水ech神经元的机械敏感阳离子通道的调节。

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Single-channel recordings were used to study the modulation of stretch-activated channels (SACs) by intracellular adenosine nucleotides in identified leech neurons. These channels exhibited two activity modes, spike-like (SL) and multiconductance (MC), displaying different polymodal activation. In the absence of mechanical stimulation, internal perfusion of excised patches with ATP induced robust and reversible activation of the MC but not of the SL mode. The ATP effect on channel activity was dose-dependent within a range of 1 microM-1 mM and was induced at different values of intracellular pH and Ca2+. The non-hydrolyzable ATP analog AMP-PNP, ATP without Mg2+ or ADP also effectively enhanced MC activity. Adenosine mimicked the effect of its nucleotides. At negative membrane potentials, both ATP and adenosine activated the channel. Moreover, ATP but not adenosine induced a flickering block. Addition of cAMP during maximal ATP activation completely and reversibly inhibited the channel, with activation and deactivation times of minutes. However, cAMP alone only induced a weak and rapid channel activation, without inhibitory effects. The expression of these channels in the growth cones of leech neurons, their permeability to Ca2+ and their sensitivity to intracellular cAMP are consistent with a role in the Ca2+ oscillations associated with cell growth.
机译:单通道记录用于研究已鉴定的ech神经元中细胞内腺苷核苷酸对拉伸激活通道(SAC)的调节。这些通道表现出两种活动模式,如峰状(SL)和多电导(MC),显示出不同的多峰激活。在没有机械刺激的情况下,用ATP对切下的斑块进行内部灌注会诱导MC的强劲而可逆的激活,而不是SL模式。 ATP对通道活性的影响在1 microM-1 mM范围内呈剂量依赖性,并在不同的细胞内pH和Ca2 +值下被诱导。不可水解的ATP类似物AMP-PNP,不含Mg2 +或ADP的ATP也可有效增强MC活性。腺苷模拟其核苷酸的作用。在负膜电位下,ATP和腺苷都激活了该通道。此外,ATP而不是腺苷会引起闪烁。在最大ATP激活期间添加cAMP完全可逆地抑制了通道,激活和失活时间均为几分钟。但是,单独的cAMP仅诱导弱而快速的通道激活,而没有抑制作用。这些通道在水ech神经元生长锥中的表达,它们对Ca2 +的通透性及其对细胞内cAMP的敏感性与在与细胞生长相关的Ca2 +振荡中的作用一致。

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