首页> 美国卫生研究院文献>The Journal of Physiology >Adenylate cyclase 5 and KCa1.1 channel are required for EGFR up-regulation of PCNA in native contractile rat basilar artery smooth muscle
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Adenylate cyclase 5 and KCa1.1 channel are required for EGFR up-regulation of PCNA in native contractile rat basilar artery smooth muscle

机译:EGFR在天然收缩大鼠基底动脉平滑肌中PCNA的EGFR上调需要腺苷酸环化酶5和KCa1.1通道

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摘要

In synthetic phenotype vascular smooth muscle cells (VSMC), activation of epidermal growth factor (EGF) receptor (EGFR) induces a sustained increase in intermediate conductance KCa (int-KCa; KCa3.1) channels that is essential for proliferation. However, a comparable mechanism has not been identified in native contractile phenotype VSMC, which express large conductance KCa (maxi-KCa; KCa1.1) channels, not int-KCa channels. Using patch clamp of freshly isolated contractile VSMC from rat basilar artery, we found that EGF (100 ng ml−1) caused hyperpolarization (7.9 ± 3.9 mV) due to activation of iberiotoxin-sensitive, maxi-KCa channels. The EGFR ligands EGF (100 ng ml−1), transforming growth factor α (0.4 ng ml−1) and heparin-binding EGF (100 ng ml−1) all caused a 20% increase in maxi-KCa channel current that was blocked by AG-1478 or by knock-down of EGFR expression using cisterna magna infusion of antisense oligodeoxynucleotide (AS-ODN). In controls, EGFR knock-down, and EGFR gain-of-expression (angiotensin II hypertension), the increase in maxi-KCa current correlated with the abundance of EGFR protein expressed. The EGFR-mediated increase in maxi-KCa channel activity was blocked by inhibiting cAMP-dependent protein kinase (cAK) using KT-5720 or Rp-cAMP, or by inhibiting adenylate cyclase type 5 (AC-5) using 2′,5′-dideoxyadenosine or knock-down of AC-5 expression by intracisternal AS-ODN. Direct infusion of EGF into cisterna magna caused up-regulation of proliferating cell nuclear antigen (PCNA) in VSMC that was prevented by coinfusion of iberiotoxin or of AG-1478. Our data, which are consistent with the hypothesis that hyperpolarization is critical for a proliferative response, are the first to implicate AC-5 and maxi-KCa channels in gene activation related to EGFR signalling in native contractile VSMC.
机译:在合成表型血管平滑肌细胞(VSMC)中,表皮生长因子(EGF)受体(EGFR)的激活诱导中间电导KCa(int-KCa; KCa3.1)通道的持续增加,这对于增殖至关重要。但是,尚未在天然的收缩表型VSMC中发现类似的机制,该表型表达大电导的KCa(maxi-KCa; KCa1.1)通道,而不是int-KCa通道。使用新鲜分离的大鼠基底动脉收缩性VSMC的膜片钳,我们发现EGF(100 ng ml -1 )由于对纤毛毒素敏感的maxi-KCa的激活而引起超极化(7.9±3.9 mV)渠道。 EGFR配体EGF(100 ng ml -1 ),转化生长因子α(0.4 ng ml -1 )和肝素结合EGF(100 ng ml - 1 )均导致maxi-KCa通道电流增加20%,该电流被AG-1478或通过使用反义寡聚脱氧核苷酸(AS-ODN)的大水罐注入的EGFR表达敲低而被阻止。在对照组,EGFR基因敲低和EGFR表达增加(血管紧张素II高血压)中,maxi-KCa电流的增加与表达的EGFR蛋白的丰度相关。通过使用KT-5720或Rp-cAMP抑制cAMP依赖性蛋白激酶(cAK),或使用2',5'抑制5型腺苷酸环化酶(AC-5),可阻止EGFR介导的maxi-KCa通道活性增加。 -二脱氧腺苷或通过脑池内AS-ODN抑制AC-5表达。将EGF直接输注到大水罐中会导致VSMC中增殖细胞核抗原(PCNA)的上调,这是通过纤维毒素或AG-1478的共输注来预防的。我们的数据与超极化对于增殖反应至关重要的假设相一致,它是第一个在涉及天然收缩性VSMC中与EGFR信号传导有关的基因激活中暗示AC-5和maxi-KCa通道的假说。

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