Samama J P, Zeppezauer E, Biellmann J F, Brändén C I
Eur J Biochem. 1977 Dec 1;81(2):403-9. doi: 10.1111/j.1432-1033.1977.tb11965.x.
We have studied the binding of the enzymatically active NAD+ analogue, 3-iodopyridine-adenine dinucleotide, and the inactive analogue, pyridine-adenine dinucleotide to the enzyme horse liver alcohol dehydrogenase using X-ray crystallographic methods. These studies were made under such conditions that crystals of the complexes were isomorphous to apoenzyme crystals. Both analogues bind in the same conformation. The binding of the adenosine moiety is very similar to that of ADP-ribose or NADH bound to the enzyme. The conformation and mode of binding of the remaining portions of the analogue molecules is, however, quite different. The pyridine ring is not situated in the active-site pocket as the nicotinamide group in the isomorphous enzyme-NADH-imidazole complex but lies at the surface of the crevice between the two domains of the subunit, approximately 1.5 nm away from the catalytically active zinc atom. Lys-228 which has been shown to be important for NADH dissociation is in this region of the molecule.
我们利用X射线晶体学方法研究了具有酶活性的NAD⁺类似物3-碘吡啶-腺嘌呤二核苷酸以及无活性类似物吡啶-腺嘌呤二核苷酸与马肝醇脱氢酶的结合情况。这些研究是在复合物晶体与脱辅酶晶体同晶型的条件下进行的。两种类似物均以相同构象结合。腺苷部分的结合与结合到该酶上的ADP-核糖或NADH的结合非常相似。然而,类似物分子其余部分的构象和结合模式却大不相同。吡啶环不像同晶型的酶-NADH-咪唑复合物中的烟酰胺基团那样位于活性位点口袋中,而是位于亚基两个结构域之间裂隙的表面,距离催化活性锌原子约1.5纳米。已证明对NADH解离很重要的赖氨酸-228位于分子的这一区域。