Singarapu Kiran K, Otte Michele M, Tonelli Marco, Westler William M, Escalante-Semerena Jorge C, Markley John L
National Magnetic Resonance Facility at Madison and Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin, United States of America; Center for NMR and Structural Chemistry, CSIR-Indian Institute of Chemical Technology, Tarnaka, Hyderabad, Telangana, India.
Department of Microbiology, University of Georgia, Athens, Georgia, United States of America.
PLoS One. 2015 Oct 29;10(10):e0141297. doi: 10.1371/journal.pone.0141297. eCollection 2015.
adenosylcobinamide-phosphate (AdoCbi-P) guanylyl transferase (CobY) is an enzyme that transfers the GMP moiety of GTP to AdoCbi yielding AdoCbi-GDP in the late steps of the assembly of Ado-cobamides in archaea. The failure of repeated attempts to crystallize ligand-free (apo) CobY prompted us to explore its 3D structure by solution NMR spectroscopy. As reported here, the solution structure has a mixed α/β fold consisting of seven β-strands and five α-helices, which is very similar to a Rossmann fold. Titration of apo-CobY with GTP resulted in large changes in amide proton chemical shifts that indicated major structural perturbations upon complex formation. However, the CobY:GTP complex as followed by 1H-15N HSQC spectra was found to be unstable over time: GTP hydrolyzed and the protein converted slowly to a species with an NMR spectrum similar to that of apo-CobY. The variant CobYG153D, whose GTP complex was studied by X-ray crystallography, yielded NMR spectra similar to those of wild-type CobY in both its apo- state and in complex with GTP. The CobYG153D:GTP complex was also found to be unstable over time.
腺苷钴胺磷酸(AdoCbi-P)鸟苷酰转移酶(CobY)是一种在古细菌中腺苷钴胺组装后期将GTP的GMP部分转移至AdoCbi从而产生AdoCbi-GDP的酶。多次尝试结晶无配体(脱辅基)CobY均告失败,这促使我们通过溶液核磁共振光谱法探究其三维结构。如本文所报道,溶液结构具有由七条β链和五条α螺旋组成的混合α/β折叠,与罗斯曼折叠非常相似。用GTP滴定脱辅基CobY导致酰胺质子化学位移发生大幅变化,这表明形成复合物时结构发生了重大扰动。然而,通过1H-15N HSQC光谱跟踪发现,CobY:GTP复合物随时间推移不稳定:GTP水解,蛋白质缓慢转化为一种核磁共振光谱与脱辅基CobY相似的物种。通过X射线晶体学研究其GTP复合物的变体CobYG153D,在脱辅基状态和与GTP形成复合物时均产生与野生型CobY相似的核磁共振光谱。还发现CobYG153D:GTP复合物随时间推移不稳定。