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A constitutively activated mutant of human soluble guanylyl cyclase (sGC): Implication for the mechanism of sGC activation

机译:人可溶性鸟苷酸环化酶的组成型激活突变体 (sGC):对sGC激活机制的影响

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摘要

Heterodimeric αβ soluble guanylyl cyclase (sGC) is a recognized receptor for nitric oxide (NO) and mediates many of its physiological functions. Although it has been clear that the heme moiety coordinated by His-105 of the β subunit is crucial for mediating the activation of the enzyme by NO, it is not understood whether the heme moiety plays any role in the function of the enzyme in the absence of NO. Here we analyze the effects of biochemical and genetic removal of heme and its reconstitution on the activity of the enzyme. Detergent-induced loss of heme from the wild-type αβ enzyme resulted in several-fold activation of the enzyme. This activation was inhibited after hemin reconstitution. A heme-deficient mutant αβCys-105 with Cys substituted for His-105 was constitutively active with specific activity approaching the activity of the wild-type enzyme activated by NO. However, reconstitution of mutant enzyme with heme and/or DTT treatment significantly inhibited the enzyme. Mutant enzyme reconstituted with ferrous heme was activated by NO and CO alone and showed additive effects between gaseous effectors and the allosteric activator 5-cyclopropyl-2-[1-(2-fluoro-benzyl)-1H-pyrazolo[3,4-b]pyridin-3-yl]-pyrimidin-4-ylamine. We propose that the heme moiety through its coordination with His-105 of the β subunit acts as an endogenous inhibitor of sGC. Disruption of the heme-coordinating bond induced by binding of NO releases the restrictions imposed by this bond and allows the formation of an optimally organized catalytic center in the heterodimer.
机译:异二聚体αβ可溶性鸟苷基环化酶(sGC)是一氧化氮(NO)的公认受体,可介导其许多生理功能。尽管已经清楚,由β亚基的His-105配位的血红素部分对于通过NO介导酶的激活至关重要,但尚不清楚在不存在的情况下,血红素部分是否在酶的功能中起任何作用的NO。在这里,我们分析了血红素的生化和遗传去除及其重构对酶活性的影响。洗涤剂引起的野生型αβ酶血红素的损失导致该酶的活化倍数。血红素重组后,这种激活被抑制。 Cys替代His-105的血红素缺陷型突变型αβCys-105具有组成型活性,其比活性接近于NO激活的野生型酶的活性。但是,用血红素和/或DTT处理重建突变酶会明显抑制该酶。亚铁血红素重构的突变酶仅被NO和CO激活,并显示出气态效应子和变构活化剂5-环丙基-2- [1-(2-氟-苄基)-1H-吡唑并[3,4-b] ] pyridin-3-yl] -pyrimidin-4-ylamine。我们提出血红素部分通过其与β亚基的His-105的配位充当sGC的内源性抑制剂。 NO结合引起的血红素配位键的破坏释放了该键施加的限制,并允许在异二聚体中形成最佳组织的催化中心。

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