首页> 美国卫生研究院文献>The Journal of Physiology >Somatostatin increases an inwardly rectifying potassium conductance in guinea-pig submucous plexus neurones.
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Somatostatin increases an inwardly rectifying potassium conductance in guinea-pig submucous plexus neurones.

机译:生长抑素增加了豚鼠粘膜下丛神经元的内向整流钾电导。

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摘要

1. Intracellular recordings were made from neurones in the submucous plexus of the guinea-pig caecum and ileum. 2. Somatostatin hyperpolarized more than 90% of the neurones. The lowest effective concentration was 300 pM and the maximum hyperpolarization (about 30-35 mV) was caused by 30 nM. Under voltage clamp at -60 mV, somatostatin caused outward currents which reached a maximum of 350-700 pA. 3. The hyperpolarization or outward current reversed polarity at a membrane potential (about -90 mV in control solutions) which changed according to the logarithm of the external potassium concentration. 4. The somatostatin current showed inward rectification; when the inward rectification of the resting membrane was prevented by extracellular caesium or rubidium, the inward rectification of the somatostatin current also disappeared. 5. A potassium conductance with the same properties was increased by alpha 2-adrenoceptor agonists and by delta-opioid receptor agonists; however, the effects of somatostatin were unaffected by antagonists at alpha 2- or delta-receptors. The somatostatin analogue, cyclo-aminoheptanoyl-Phe-D-Trp-Lys-(benzyl)Thr, also did not antagonize the actions of somatostatin. 6. The hyperpolarization (or outward current) was unaffected by forskolin, cholera toxin, sodium fluoride, phorbol esters or intracellular application of adenosine 5'-O-(3-thiotriphosphate) (ATP-gamma-S). However, when the recording electrode contained guanosine 5'-O-(3-thiotriphosphate) (GTP-gamma-S) the hyperpolarizations reversed only partially when somatostatin application was discontinued, and repeated applications caused the membrane potential to approach and remain close to the potassium equilibrium potential. 7. It is concluded that somatostatin increases the conductance of a set of inwardly rectifying potassium channels in submucous plexus neurones. The coupling between somatostatin receptor and ion channel involves a guanosine 5'-triphosphate-binding protein, but is not likely to result from changes in intracellular levels of cyclic adenosine 3',5'-monophosphate.
机译:1.细胞内记录来自豚鼠盲肠和回肠粘膜下丛神经元。 2.生长抑素超极化超过90%的神经元。最低有效浓度为300 pM,最大超极化(约30-35 mV)是由30 nM引起的。在-60 mV的钳位电压下,生长抑素引起的向外电流最大为350-700 pA。 3.在膜电位(对照溶液中约为-90 mV)下,超极化或外向电流的极性会根据外部钾浓度的对数而变化。 4.生长抑素电流显示向内整流;当胞外铯或rub阻止了静息膜的向内整流时,生长抑素电流的向内整流也消失了。 5.α2肾上腺素受体激动剂和δ-阿片受体激动剂增加了具有相同性质的钾电导。然而,生长抑素的作用不受α2或δ受体拮抗剂的影响。生长抑素类似物,环氨基庚酰基-Phe-D-Trp-Lys-(苄基)Thr,也没有拮抗生长抑素的作用。 6.超极化(或外向电流)不受佛司可林,霍乱毒素,氟化钠,佛波醇酯或腺苷5'-O-(3-硫代三磷酸)(ATP-γ-S)的细胞内作用。但是,当记录电极包含鸟苷5'-O-(3-硫代三磷酸)(GTP-γ-S)时,如果停止使用生长抑素,超极化只会部分逆转,并且重复施加会导致膜电位接近并保持接近钾平衡电位。 7.结论是生长抑素增加了粘膜下神经元中一组内向整流钾通道的传导。生长抑素受体和离子通道之间的偶联涉及鸟苷5'-三磷酸结合蛋白,但不可能是由于细胞内环腺苷3',5'-单磷酸水平的变化而引起的。

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