Ueda H, Shoku Y, Hayashi N, Mitsunaga J, In Y, Doi M, Inoue M, Ishida T
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences, Japan.
Biochim Biophys Acta. 1991 Oct 25;1080(2):126-34. doi: 10.1016/0167-4838(91)90138-p.
In order to elucidate the substrate specificity of alanyl-tRNA synthetase, 5'-O-[N-(L-alanyl)sulfamoyl]adenosine (Ala-SA), an analogue of alanyl-AMP, was chemically synthesized. Its binding ability is similar to that of the substrate based on the inhibitory activity for the aminoacylation of alanyl-tRNA synthetase. Taking advantage of the stable sulfamoyl bond of Ala-Sa, compared with the highly labile aminoacyl bond of alanyl-AMP, the molecular conformation of the former inhibitor was studied by X-ray single crystal analysis. Crystal data are as follows: C13H19N7O7S.2H2O, space group C2, a = 39.620(6), b = 5.757(1), c = 20.040(3) A, beta = 117.2(1) degrees, V = 4065(9) A3, Z = 8, and final R = 0.065 for 2785 independent reflections of F(2)0 greater than or equal to 2 sigma (F0)2. In the crystal, the molecule is in a zwitterionic state with the terminal amino group protonated and sulfamoyl group deprotonated, and takes an open conformation, where the L-alanine moiety is located far from the adenosine moiety with gauche/trans and trans orientations about the exocyclic C(4')-C(5') and C(5')-O(5') bonds, respectively. The conformation of the adenosine moiety is anti for the glycosyl bond and C(3')-endo for the ribose puckering, and alanine is in the usually observed trans region for the psi torsion angle. The molecular dimensions of the sulfamoyl group are nearly the same as those of the phosphate group. The biological significance of the observed Ala-SA conformation is discussed in relation with the molecular conformation of tyrosyl-AMP complexed with tyrosyl-tRNA synthetase.
为阐明丙氨酰 - tRNA合成酶的底物特异性,化学合成了丙氨酰 - AMP的类似物5'-O-[N-(L-丙氨酰)氨磺酰]腺苷(Ala-SA)。基于其对丙氨酰 - tRNA合成酶氨酰化反应的抑制活性,其结合能力与底物相似。利用Ala-Sa稳定的氨磺酰键,与丙氨酰 - AMP高度不稳定的氨酰键相比,通过X射线单晶分析研究了前一种抑制剂的分子构象。晶体数据如下:C13H19N7O7S·2H2O,空间群C2,a = 39.620(6),b = 5.757(1),c = 20.040(3) Å,β = 117.2(1)°,V = 4065(9) Å3,Z = 8,对于2785个F(2)0≥2σ(F0)2的独立反射,最终R = 0.065。在晶体中,分子处于两性离子状态,末端氨基质子化,氨磺酰基去质子化,并呈开放构象,其中L-丙氨酸部分远离腺苷部分,分别关于环外C(4')-C(5')和C(5')-O(5')键呈gauche/trans和trans取向。腺苷部分的构象对于糖苷键是反式的,对于核糖褶皱是C(3')-endo,并且丙氨酸对于ψ扭转角处于通常观察到的反式区域。氨磺酰基的分子尺寸与磷酸基团的几乎相同。结合与酪氨酰 - tRNA合成酶复合的酪氨酰 - AMP的分子构象,讨论了所观察到的Ala-SA构象的生物学意义。