首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Antagonistic regulation of swelling-activated Cl− current in rabbit ventricle by Src and EGFR protein tyrosine kinases
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Antagonistic regulation of swelling-activated Cl− current in rabbit ventricle by Src and EGFR protein tyrosine kinases

机译:Src和EGFR蛋白酪氨酸激酶对兔心室肿胀激活的Cl-电流的拮抗作用

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摘要

Regulation of swelling-activated Cl current (ICl,swell) is complex, and multiple signaling cascades are implicated. To determine whether protein tyrosine kinase (PTK) modulates ICl,swell and to identify the PTK involved, we studied the effects of a broad-spectrum PTK inhibitor (genistein), selective inhibitors of Src (PP2, a pyrazolopyrimidine) and epidermal growth factor receptor (EGFR) kinase (PD-153035), and a protein tyrosine phosphatase (PTP) inhibitor (orthovanadate). ICl,swell evoked by hyposmotic swelling was increased 181 ± 17% by 100 μM genistein, and the genistein-induced current was blocked by the selective ICl,swell blocker tamoxifen (10 μM). Block of Src with PP2 (10 μM) stimulated tamoxifen-sensitive ICl,swell by 234 ± 27%, mimicking genistein, whereas the inactive analog of PP2, PP3 (10 μM), had no effect. Moreover, block of PTP by orthovanadate (1 mM) inhibited ICl,swell and prevented its stimulation by PP2. In contrast with block of Src, block of EGFR kinase with PD-153035 (20 nM) inhibited ICl,swell. Several lines of evidence argue that the PP2-stimulated current was ICl,swell: 1) the stimulation was volume dependent, 2) the current was blocked by tamoxifen, 3) the current outwardly rectified with both symmetrical and physiological Cl gradients, and 4) the current reversed near the Cl equilibrium potential. To rule out contributions of other currents, Cd2+ (0.2 mM) and Ba2+ (1 mM) were added to the bath. Surprisingly, Cd2+ suppressed the decay of Cd2+ plus Ba2+ eliminated time-dependent ICl,swell, and currents between −100 and −100 mV. Nevertheless, these divalent ions did not eliminate ICl,swell or prevent its stimulation by PP2. The results indicate that tyrosine phosphorylation controls ICl,swell, and regulation of ICl,swell by the Src and EGFR kinase families of PTK is antagonistic.
机译:溶胀激活的Cl -电流(ICl,swell)的调节是复杂的,并且涉及多个信号级联。为了确定蛋白质酪氨酸激酶(PTK)是否能调节ICl,溶胀并鉴定涉及的PTK,我们研究了广谱PTK抑制剂(染料木黄酮),Src的选择性抑制剂(PP2,吡唑并嘧啶)和表皮生长因子受体的作用。 (EGFR)激酶(PD-153035)和蛋白酪氨酸磷酸酶(PTP)抑制剂(原钒酸盐)。低渗性肿胀引起的ICl膨胀通过100μM染料木黄酮增加181±17%,染料木黄酮诱导的电流被选择性ICl膨胀阻断剂他莫昔芬(10μM)阻断。用PP2(10μM)阻断Src刺激了他莫昔芬敏感的ICl,模拟染料木黄酮膨胀234±27%,而无效的PP2类似物PP3(10μM)没有作用。此外,原钒酸盐(1 mM)对PTP的阻滞抑制了ICl的溶胀并阻止了PP2的刺激。与Src阻滞相反,PD-153035(20 nM)阻止EGFR激酶抑制ICl膨胀。有几条证据表明,PP2刺激的电流为ICl,膨胀:1)刺激与体积有关,2)电流被他莫昔芬阻滞,3)电流通过对称的和生理学的Cl -< / sup>梯度,以及4)电流在Cl -平衡电位附近反转。为了排除其他电流的贡献,将Cd 2 + (0.2 mM)和Ba 2 + (1 mM)添加到浴中。出乎意料的是,Cd 2 + 抑制了Cd 2 + 加Ba 2 + 的衰减,消除了与时间有关的ICl,膨胀和电流介于-100之间和-100 mV。然而,这些二价离子并没有消除ICl,膨胀或阻止其被PP2刺激。结果表明酪氨酸磷酸化控制PTK的Src和EGFR激酶家族控制ICl溶胀,并调节ICl溶胀。

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