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通过磷酸化调节可溶性鸟苷酸环化酶活性。

Modulation of soluble guanylate cyclase activity by phosphorylation.

作者信息

Murthy Karnam S

机构信息

Departments of Physiology and Medicine, Medical College of Virginia, Virginia Commonwealth University Richmond, Richmond, VA 23298-0711, USA.

出版信息

Neurochem Int. 2004 Nov;45(6):845-51. doi: 10.1016/j.neuint.2004.03.014.

Abstract

The levels of the cGMP in smooth muscle of the gut reflect continued synthesis by soluble guanylate cyclase (GC) and breakdown by phosphodiesterase 5 (PDE5). Soluble GC is a haem-containing, heterodimeric protein consisting alpha- and beta-subunits: each subunit has N-terminal regulatory domain and a C-terminal catalytic domain. The haem moiety acts as an intracellular receptor for nitric oxide (NO) and determines the ability of NO to activate the enzyme and generate cGMP. In the present study the mechanism by which protein kinases regulate soluble GC in gastric smooth muscle was examined. Sodium nitroprusside (SNP) acting as a NO donor stimulated soluble GC activity and increased cGMP levels. SNP induced soluble GC phosphorylation in a concentration-dependent fashion. SNP-induced soluble GC phosphorylation was abolished by the selective cGMP-dependent protein kinase (PKG) inhibitors, Rp-cGMPS and KT-5823. In contrast, SNP-stimulated soluble GC activity and cGMP levels were significantly enhanced by Rp-cGMPS and KT-5823. Phosphorylation and inhibition of soluble GC were PKG specific, as selective activator of cAMP-dependent protein kinase, Sp-5, 6-DCl-cBiMPS had no effect on SNP-induced soluble GC phosphorylation and activity. The ability of PKG to stimulate soluble GC phosphorylation was demonstrated in vitro by back phosphorylation technique. Addition of purified phosphatase 1 inhibited soluble GC phosphorylation in vitro, and inhibition was reversed by a high concentration (10 microM) of okadaic acid. In gastric smooth muscle cells, inhibition of phosphatase activity by okadaic acid increased soluble GC phosphorylation in a concentration-dependent fashion. The increase in soluble GC phosphorylation inhibited SNP-stimulated soluble GC activity and cGMP formation. The results implied the feedback inhibition of soluble GC activity by PKG-dependent phosphorylation impeded further formation of cGMP.

摘要

肠道平滑肌中cGMP的水平反映了可溶性鸟苷酸环化酶(GC)的持续合成以及磷酸二酯酶5(PDE5)的降解。可溶性GC是一种含血红素的异二聚体蛋白,由α和β亚基组成:每个亚基都有N端调节结构域和C端催化结构域。血红素部分作为一氧化氮(NO)的细胞内受体,决定了NO激活该酶并生成cGMP的能力。在本研究中,研究了蛋白激酶调节胃平滑肌中可溶性GC的机制。作为NO供体的硝普钠(SNP)刺激了可溶性GC活性并提高了cGMP水平。SNP以浓度依赖的方式诱导可溶性GC磷酸化。选择性cGMP依赖性蛋白激酶(PKG)抑制剂Rp-cGMPS和KT-5823消除了SNP诱导的可溶性GC磷酸化。相反,Rp-cGMPS和KT-5823显著增强了SNP刺激的可溶性GC活性和cGMP水平。可溶性GC的磷酸化和抑制具有PKG特异性,因为cAMP依赖性蛋白激酶的选择性激活剂Sp-5,6-DCl-cBiMPS对SNP诱导的可溶性GC磷酸化和活性没有影响。通过反向磷酸化技术在体外证明了PKG刺激可溶性GC磷酸化的能力。添加纯化的磷酸酶1在体外抑制了可溶性GC磷酸化,高浓度(10μM)的冈田酸可逆转这种抑制。在胃平滑肌细胞中,冈田酸抑制磷酸酶活性以浓度依赖的方式增加了可溶性GC磷酸化。可溶性GC磷酸化的增加抑制了SNP刺激的可溶性GC活性和cGMP形成。结果表明,PKG依赖性磷酸化对可溶性GC活性的反馈抑制阻碍了cGMP的进一步形成。

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