首页> 外文期刊>The Journal of Physiology >Agents that increase tyrosine phosphorylation activate a non-selective cation current in single rabbit portal vein smooth muscle cells.
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Agents that increase tyrosine phosphorylation activate a non-selective cation current in single rabbit portal vein smooth muscle cells.

机译:增加酪氨酸磷酸化的试剂激活了单个兔门静脉平滑肌细胞中的非选择性阳离子电流。

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The effects of agents that increase tyrosine phosphorylation were studied with whole-cell recording of membrane currents in single smooth muscle cells from the rabbit portal vein. In K+-free conditions with the chloride equilibrium potential at about -50 mV, intracellular application via the patch pipette of 200 microM sodium orthovanadate (Na3VO4), which inhibits tyrosine phosphatases, activated a "noisy" inward current at a holding potential of -50 mV. Intracellular dialysis with 100 microM (pY)EEI, a peptide activator of the cytosolic tyrosine kinase pp60c-src, and bath application of 5 microM insulin, which activates receptor-coupled tyrosine kinases, also evoked a "noisy" inward current. The current-voltage relationships and the reversal potential (about +10 mV) of the Na3VO4-, pp60c-src- and insulin-induced currents were similar to those of the noradrenaline-evoked non-selective cation current (Icat). The inward currents evoked by noradrenaline, Na3VO4, (pY)EEI and insulin were all greatly potentiated when the bathing calcium concentration was reduced from 1.5 mM to 50 microM. The single channel conductance estimated from spectral density analysis of the whole-cell current was about 20 pS for noradrenaline, Na3VO4, (pY)EEI and insulin. Moreover for all agents the spectra were described by the sum of two Lorentzians with similar corner frequencies. Noradrenaline-evoked Icat was inhibited to a similar degree by the tyrosine kinase inhibitors genistein and tyrphostin 23 and their inactive analogues daidzein and tyrphostin A1, respectively. In the presence of Na3VO4, application of noradrenaline evoked a cation current of similar peak amplitude to control Icat although the rate of decay of Icat was enhanced in the presence of Na3VO4. This study shows that stimulation of both cytosolic and receptor-coupled tyrosine kinases evokes a non-selective cation current and the conductance is similar to that activated by noradrenaline.
机译:通过从兔门静脉的单个平滑肌细胞中完整记录膜电流,研究了增加酪氨酸磷酸化作用的药物的作用。在氯平衡电位约为-50 mV的无K +条件下,通过200μM原钒酸钠(Na3VO4)的补片吸管向细胞内施用,该酪蛋白可抑制酪氨酸磷酸酶,在保持电位为-50时激活了“嘈杂”的内向电流。毫伏用100 microM(pY)EEI(胞质酪氨酸激酶pp60c-src的肽激活剂)进行细胞内透析,并浴应用5 microM胰岛素(其激活受体偶联的酪氨酸激酶),也引起了“嘈杂”的内向电流。 Na3VO4-,pp60c-src-和胰岛素诱导的电流的电流-电压关系和反向电位(约+10 mV)与去甲肾上腺素诱发的非选择性阳离子电流(Icat)相似。当沐浴液中的钙浓度从1.5 mM降低至50 microM时,去甲肾上腺素,Na3VO4,(pY)EEI和胰岛素引起的内向电流均被大大增强。从去甲肾上腺素,Na3VO4,(pY)EEI和胰岛素的全细胞电流的频谱密度分析估计的单通道电导约为20 pS。此外,对于所有试剂,光谱是由两个具有相似转折频率的洛伦兹和的总和来描述的。去甲肾上腺素诱发的Icat被酪氨酸激酶抑制剂Genistein和tyrphostin 23及其非活性类似物daidzein和tyrphostin A1抑制的程度相似。在存在Na3VO4的情况下,去甲肾上腺素的使用引起了峰值电流相似的阳离子电流,以控制Icat,尽管在存在Na3VO4的情况下Icat的衰减速率有所提高。这项研究表明,胞浆酪氨酸激酶和受体偶联酪氨酸激酶的刺激都引起非选择性阳离子电流,其电导率类似于去甲肾上腺素所激活的电导率。

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