4IAH
Crystal Structure of BAY 60-2770 bound C139A H-NOX domain with S-nitrosylated conserved C122
4IAH の概要
エントリーDOI | 10.2210/pdb4iah/pdb |
関連するPDBエントリー | 2O09 2O0C 2O0G 3L6J 4IAE 4IAM |
分子名称 | Alr2278 protein, 4-({(4-carboxybutyl)[2-(5-fluoro-2-{[4'-(trifluoromethyl)biphenyl-4-yl]methoxy}phenyl)ethyl]amino}methyl)benzoic acid, MALONATE ION, ... (4 entities in total) |
機能のキーワード | h-nox domain, soluble guanylyl cyclase, bay 60-2770, s-nitrosylation, conserved c122, heme binding, no binding, lyase |
由来する生物種 | Nostoc sp. |
タンパク質・核酸の鎖数 | 2 |
化学式量合計 | 42226.96 |
構造登録者 | |
主引用文献 | Kumar, V.,Martin, F.,Hahn, M.G.,Schaefer, M.,Stamler, J.S.,Stasch, J.P.,van den Akker, F. Insights into BAY 60-2770 Activation and S-Nitrosylation-Dependent Desensitization of Soluble Guanylyl Cyclase via Crystal Structures of Homologous Nostoc H-NOX Domain Complexes. Biochemistry, 52:3601-3608, 2013 Cited by PubMed Abstract: The soluble guanylyl cyclase (sGC) is an important receptor for nitric oxide (NO). Nitric oxide activates sGC several hundred fold to generate cGMP from GTP. Because of sGC's salutary roles in cardiovascular physiology, it has received substantial attention as a drug target. The heme domain of sGC is key to its regulation as it not only contains the NO activation site but also harbors sites for NO-independent sGC activators as well an S-nitrosylation site (β1 C122) involved in desensitization. Here we report the crystal structure of the activator BAY 60-2770 bound to the Nostoc H-NOX domain that is homologous to sGC. The structure reveals that BAY 60-2770 has displaced the heme and acts as a heme mimetic via carboxylate-mediated interactions with the conserved YxSxR motif as well as hydrophobic interactions. Comparisons with the previously determined BAY 58-2667 bound structure reveal that BAY 60-2770 is more ordered in its hydrophobic tail region. sGC activity assays demonstrate that BAY 60-2770 has about 10% higher fold maximal stimulation compared to BAY 58-2667. S-Nitrosylation of the BAY 60-2770 substituted Nostoc H-NOX domain causes subtle changes in the vicinity of the S-nitrosylated C122 residue. These shifts could impact the adjacent YxSxR motif and αF helix and as such potentially inhibit either heme incorporation or NO-activation of sGC and thus provide a structural basis for desensitization. PubMed: 23614626DOI: 10.1021/bi301657w 主引用文献が同じPDBエントリー |
実験手法 | X-RAY DIFFRACTION (2.8 Å) |
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