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Modulation of calcium currents is eliminated after cleavage of a strategic component of the mammalian secretory apparatus.

机译:切割哺乳动物分泌装置的重要组成部分后,就消除了对钙电流的调节。

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摘要

Adenosine inhibits neurotransmitter secretion from motor nerves by an effect on the secretory apparatus in amphibia. In contrast, the inhibitory effect of adenosine is associated with decreases in calcium currents at mouse motor nerve endings. To determine if the action of adenosine in the mouse is mediated thorough a direct effect on calcium channels or through the secretory machinery, the effects of cleavage of the SNARE proteins on the action of adenosine were examined. Cleavage of the SNARE syntaxin with botulinum toxin type C (Botx/C) prevented the inhibitory effect of adenosine on nerve terminal calcium currents. Cleavage of the other SNAREs (synaptobrevin with Botx/D or SNAP-25 with Botx/A) failed to affect the inhibitory action of adenosine. The results provide evidence for an intimate coupling of nerve terminal calcium channels with a plasma membrane component of the SNARE complex, such that modulation of calcium currents by a G-protein coupled receptor cannot occur when syntaxin is cleaved.
机译:腺苷通过影响两栖动物的分泌装置来抑制运动神经的神经递质分泌。相反,腺苷的抑制作用与小鼠运动神经末梢的钙电流降低有关。为了确定是否通过直接作用于钙通道或通过分泌机制介导小鼠中腺苷的作用,研究了SNARE蛋白裂解对腺苷作用的影响。用C型肉毒杆菌毒素(Botx / C)切割SNARE语法可防止腺苷对神经末梢钙电流的抑制作用。其他SNARE(Synaptobrevin与Botx / D或SNAP-25与Botx / A)的切割均无法影响腺苷的抑制作用。该结果提供了神经末梢钙通道与SNARE复合物的质膜成分紧密结合的证据,使得当语法被切割时,G-蛋白偶联受体不会发生钙电流调节。

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