Guan C, Liu Y, Shao Y, Cui T, Liao W, Ewel A, Whitaker R, Paulus H
New England Biolabs Inc., Beverly, Massachusetts 01915, USA.
J Biol Chem. 1998 Apr 17;273(16):9695-702. doi: 10.1074/jbc.273.16.9695.
Glycosylasparaginase is an N-terminal nucleophile hydrolase and is activated by intramolecular autoproteolytic processing. This cis-autoproteolysis possesses unique kinetics characterized by a reversible N-O acyl rearrangement step in the processing. Arg-180 and Asp-183, involved in binding of the substrate in the mature enzyme, are also involved in binding of free amino acids in the partially formed substrate pocket on certain mutant precursors. This binding site is sequestered in the wild-type precursor. Binding of free amino acids on mutant precursors can either inhibit or accelerate their processing, depending on the individual mutants and amino acids. The polypeptide sequence at the processing site, which is highly conserved, adopts a special conformation. Asp-151 is essential for maintaining this conformation, possibly by anchoring its side chain into the partially formed substrate pocket through interaction with Arg-180. The reactive nucleophile Thr-152 is activated not only by deprotonation by His-150 but also by interaction with Thr-170, suggesting a His-Thr-Thr active triad for the autoproteolysis.
糖基天冬酰胺酶是一种N端亲核水解酶,通过分子内自催化加工而被激活。这种顺式自催化具有独特的动力学特征,其加工过程中存在一个可逆的N-O酰基重排步骤。参与成熟酶中底物结合的精氨酸-180和天冬氨酸-183,也参与某些突变前体中部分形成的底物口袋中游离氨基酸的结合。该结合位点在野生型前体中被隔离。突变前体上游离氨基酸的结合可根据单个突变体和氨基酸的不同,抑制或加速其加工过程。加工位点处高度保守的多肽序列呈现出一种特殊构象。天冬氨酸-151可能通过与精氨酸-180相互作用将其侧链锚定到部分形成的底物口袋中,从而对维持这种构象至关重要。反应性亲核苏氨酸-152不仅通过组氨酸-150的去质子化被激活,还通过与苏氨酸-170的相互作用被激活,这表明存在一个用于自催化的组氨酸-苏氨酸-苏氨酸活性三联体。