Abele U, Schulz G E
Institut für Organische Chemie und Biochemie, Albert-Ludwigs-Universität, Freiburg im Breisgau, Germany.
Protein Sci. 1995 Jul;4(7):1262-71. doi: 10.1002/pro.5560040702.
The structure of adenylate kinase from yeast ligated with the two-substrate-mimicking inhibitor Ap5A and Mg2+ has been refined to 1.96 A resolution. In addition, the refined structure of the same complex with a bound imidazole molecule replacing Mg2+ has been determined at 1.63 A. These structures indicate that replacing Mg2+ by imidazole disturbs the water structure and thus the complex. A comparison with the G-proteins shows that Mg2+ is exactly at the same position with respect to the phosphates. However, although the Mg2+ ligand sphere of the G-proteins is a regular octahedron containing peptide ligands, the reported adenylate kinase has no such ligands and an open octahedron leaving space for the Mg2+ to accompany the transferred phosphoryl group. A superposition of the known crystalline and therefore perturbed phosphoryl transfer geometries in the adenylate kinases demonstrates that all of them are close to the start of the forward reaction with bound ATP and AMP. Averaging all observed perturbed structures gives rise to a close approximation of the transition state, indicating in general how to establish an elusive transition state geometry. The average shows that the in-line phosphoryl transfer is associative, because there is no space for a dissociative metaphosphate intermediate. As a side result, the secondary dipole interaction in the alpha-helices of both protein structures has been quantified.
与双底物模拟抑制剂Ap5A和Mg2+结合的酵母腺苷酸激酶结构已精修至1.96 Å分辨率。此外,已确定同一复合物与取代Mg2+的结合咪唑分子的精修结构,分辨率为1.63 Å。这些结构表明,用咪唑取代Mg2+会扰乱水结构,进而扰乱复合物。与G蛋白的比较表明,Mg2+相对于磷酸盐处于完全相同的位置。然而,尽管G蛋白的Mg2+配体球是一个包含肽配体的规则八面体,但报道的腺苷酸激酶没有此类配体,而是一个开放的八面体,为Mg2+留出空间以伴随转移的磷酰基。腺苷酸激酶中已知晶体结构以及因此受到扰动的磷酰基转移几何结构的叠加表明,所有这些结构都接近结合ATP和AMP时正向反应的起始状态。对所有观察到的受扰结构进行平均可得到过渡态的近似值,总体上表明了如何建立难以捉摸的过渡态几何结构。平均值表明,线性磷酰基转移是缔合性的,因为没有离解的偏磷酸中间体的空间。作为附带结果,对两种蛋白质结构α螺旋中的二级偶极相互作用进行了量化。