Marmorstein R Q, Joachimiak A, Sprinzl M, Sigler P B
J Biol Chem. 1987 Apr 5;262(10):4922-7.
We have employed equilibrium dialysis to help study the mechanism by which the unliganded Escherichia coli trp aporepressor is activated by L-tryptophan to the liganded trp repressor. By measuring the relative affinity of L-tryptophan and various tryptophan analogues for the co-repressor's binding site, we have estimated the extent to which each of the functional groups of L-tryptophan contributes to the liganding process and discuss their role in the context of the crystal structures of the trp repressor and aporepressor. We have found that the indole ring and alpha carboxyl group of L-tryptophan are mainly responsible for its affinity to the aporepressor. The alpha amino group, however, has a small negative contribution to the affinity of L-tryptophan for the aporepressor which may be associated with its essential role in operator-specific binding.
我们采用平衡透析法来辅助研究无配体的大肠杆菌色氨酸脱辅基阻遏物被L-色氨酸激活为配体结合型色氨酸阻遏物的机制。通过测量L-色氨酸及各种色氨酸类似物对共阻遏物结合位点的相对亲和力,我们估算了L-色氨酸各官能团对配体结合过程的贡献程度,并结合色氨酸阻遏物和脱辅基阻遏物的晶体结构讨论了它们的作用。我们发现,L-色氨酸的吲哚环和α羧基对其与脱辅基阻遏物的亲和力起主要作用。然而,α氨基对L-色氨酸与脱辅基阻遏物的亲和力有较小的负贡献,这可能与其在操纵基因特异性结合中的重要作用有关。