Department of Pharmacology and Chemical Biology, Baylor College of Medicine, Houston, Texas, USA.
Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, Texas, USA.
Protein Sci. 2021 Feb;30(2):316-327. doi: 10.1002/pro.4008. Epub 2020 Dec 10.
The intrinsic activity of the C-terminal catalytic (C) domain of cyclic guanosine monophosphate (cGMP)-dependent protein kinases (PKG) is inhibited by interactions with the N-terminal regulatory (R) domain. Selective binding of cGMP to cyclic nucleotide binding (CNB) domains within the R-domain disrupts the inhibitory R-C interaction, leading to the release and activation of the C-domain. Affinity measurements of mammalian and plasmodium PKG CNB domains reveal different degrees of cyclic nucleotide affinity and selectivity; the CNB domains adjacent to the C-domain are more cGMP selective and therefore critical for cGMP-dependent activation. Crystal structures of isolated CNB domains in the presence and absence of cyclic nucleotides reveal isozyme-specific contacts that explain cyclic nucleotide selectivity and conformational changes that accompany CNB. Crystal structures of tandem CNB domains identify two types of CNB-mediated dimeric contacts that indicate cGMP-driven reorganization of domain-domain interfaces that include large conformational changes. Here, we review the available structural and functional information of PKG CNB domains that further advance our understanding of cGMP mediated regulation and activation of PKG isozymes.
蛋白激酶 G(PKG)的环鸟苷酸单磷酸(cGMP)依赖性的 C 端催化(C)域的固有活性受到与 N 端调节(R)域相互作用的抑制。cGMP 与 R 域内的环核苷酸结合(CNB)域的选择性结合破坏了抑制性 R-C 相互作用,导致 C 域的释放和激活。对哺乳动物和疟原虫 PKG CNB 域的亲和力测量揭示了不同程度的环核苷酸亲和力和选择性;与 C 域相邻的 CNB 域对 cGMP 更具选择性,因此对于 cGMP 依赖性激活至关重要。在存在和不存在环核苷酸的情况下分离的 CNB 域的晶体结构揭示了同工酶特异性接触,这些接触解释了环核苷酸的选择性和伴随 CNB 的构象变化。串联 CNB 域的晶体结构确定了两种 CNB 介导的二聚体接触类型,这表明 cGMP 驱动的域-域界面的重组,包括大的构象变化。在这里,我们回顾了 PKG CNB 域的现有结构和功能信息,这些信息进一步加深了我们对 cGMP 介导的 PKG 同工酶调节和激活的理解。