Ahmed Khandaker Ahtesham, Zhang Tianli, Ono Katsuhiko, Tsutsuki Hiroyasu, Ida Tomoaki, Akashi Soichiro, Miyata Keishi, Oike Yuichi, Akaike Takaaki, Sawa Tomohiro
Department of Pathology, University of Alabama at Birmingham.
Biol Pharm Bull. 2017 Mar 1;40(3):365-374. doi: 10.1248/bpb.b16-00880. Epub 2016 Dec 16.
Guanosine 3',5'-cyclic monophosphate (cGMP)-dependent protein kinases (PKG) are kinases regulating diverse physiological functions including vascular smooth muscle relaxation, neuronal synaptic plasticity, and platelet activities. Certain PKG inhibitors, such as Rp-diastereomers of derivatives of guanosine 3',5'-cyclic monophosphorothioate (Rp-cGMPS), have been designed and used to study PKG-regulated cell signaling. 8-Nitroguanosine 3',5'-cyclic monophosphate (8-nitro-cGMP) is an endogenous cGMP derivative formed as a result of excess production of reactive oxygen species and nitric oxide. 8-Nitro-cGMP causes persistent activation of PKG1α through covalent attachment of cGMP moieties to cysteine residues of the enzyme (i.e., the process called protein S-guanylation). In this study, we synthesized a nitrated analogue of Rp-cGMPS, 8-nitroguanosine 3',5'-cyclic monophosphorothioate Rp-isomer (Rp-8-nitro-cGMPS), and investigated its effects on PKG1α activity. We synthesized Rp-8-nitro-cGMPS by reacting Rp-8-bromoguanosine 3',5'-cyclic monophosphorothioate (Rp-8-bromo-cGMPS) with sodium nitrite. Rp-8-Nitro-cGMPS reacted with the thiol compounds cysteine and glutathione to form Rp-8-thioalkoxy-cGMPS adducts to a similar extent as did 8-nitro-cGMP. As an important finding, a protein S-guanylation-like modification was clearly observed, by using Western blotting, in the reaction between recombinant PKG1α and Rp-8-nitro-cGMPS. Rp-8-Nitro-cGMPS inhibited PKG1α activity with an inhibitory constant of 22 µM in a competitive manner. An organ bath assay with mouse aorta demonstrated that Rp-8-nitro-cGMPS inhibited vascular relaxation induced by acetylcholine or 8-bromo-cGMP more than Rp-8-bromo-cGMPS did. These findings suggest that Rp-8-nitro-cGMPS inhibits PKG through induction of an S-guanylation-like modification by attaching the Rp-cGMPS moiety to the enzyme. Additional study is warranted to explore the potential application of Rp-8-nitro-cGMPS to biochemical and therapeutic research involving PKG1α activation.
3',5'-环磷酸鸟苷(cGMP)依赖性蛋白激酶(PKG)是调节多种生理功能的激酶,包括血管平滑肌舒张、神经元突触可塑性和血小板活性。某些PKG抑制剂,如3',5'-环磷硫代鸟苷(Rp-cGMPS)衍生物的Rp-非对映体,已被设计并用于研究PKG调节的细胞信号传导。8-硝基鸟苷3',5'-环磷酸(8-硝基-cGMP)是一种内源性cGMP衍生物,由活性氧和一氧化氮的过量产生而形成。8-硝基-cGMP通过将cGMP部分共价连接到该酶的半胱氨酸残基上(即所谓的蛋白质S-鸟苷酰化过程)导致PKG1α的持续激活。在本研究中,我们合成了Rp-cGMPS的硝化类似物8-硝基鸟苷3',5'-环磷硫代酸酯Rp-异构体(Rp-8-硝基-cGMPS),并研究了其对PKG1α活性的影响。我们通过使Rp-8-溴鸟苷3',5'-环磷硫代酸酯(Rp-8-溴-cGMPS)与亚硝酸钠反应合成了Rp-8-硝基-cGMPS。Rp-8-硝基-cGMPS与硫醇化合物半胱氨酸和谷胱甘肽反应形成Rp-8-硫代烷氧基-cGMPS加合物,其程度与8-硝基-cGMP相似。作为一项重要发现,通过蛋白质印迹法在重组PKG1α与Rp-8-硝基-cGMPS之间的反应中清楚地观察到了类似蛋白质S-鸟苷酰化的修饰。Rp-8-硝基-cGMPS以竞争性方式抑制PKG1α活性,抑制常数为22μM。用小鼠主动脉进行的器官浴实验表明,Rp-8-硝基-cGMPS比Rp-8-溴-cGMPS更能抑制乙酰胆碱或8-溴-cGMP诱导的血管舒张。这些发现表明,Rp-8-硝基-cGMPS通过将Rp-cGMPS部分连接到酶上诱导类似S-鸟苷酰化的修饰来抑制PKG。有必要进行进一步研究以探索Rp-8-硝基-cGMPS在涉及PKG1α激活的生化和治疗研究中的潜在应用。