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Ligand-mediated conformational changes in wheat-germ aspartate transcarbamoylase indicated by proteolytic susceptibility.

机译:蛋白水解敏感性表明,配体介导的麦胚天冬氨酸转氨甲酰酶的构象变化。

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摘要

Ligand-mediated effects on the inactivation of pure wheat-germ aspartate transcarbamoylase by trypsin were examined. Inactivation was apparently first-order in all cases, and the effects of ligand concentration on the pseudo-first-order rate constant, k, were studied. Increase in k (labilization) was effected by carbamoyl phosphate, phosphate and the putative transition-state analogue, N-phosphonoacetyl-L-aspartate. Decrease in k (protection) was effected by the end-product inhibitor, UMP, and by the ligand pairs aspartate/phosphate and succinate/carbamoyl phosphate, but not by aspartate or succinate alone up to 10 mM. Except for protection by the latter ligand pairs, all other ligand-mediated effects were also observed on inactivation of the enzyme by Pronase and chymotrypsin. Ligand-mediated effects on the fragmentation of the polypeptide chain by trypsin were examined electrophoretically. Slight labilization of the chain was observed in the presence of carbamoyl phosphate, phosphate and N-phosphonoacetyl-L-aspartate. An extensive protection by UMP was observed, which apparently included all trypsin-sensitive peptide bonds. No significant effect by the ligand pair succinate/carbamoyl phosphate was noted. It is concluded from these observations that UMP triggers an extensive, probably co-operative, transition to a proteinase-resistant conformation, and that carbamoyl phosphate similarly triggers a transition to an alternative, proteinase-sensitive, conformation. These antagonistic conformational changes may account for the regulatory kinetic effects reported elsewhere [Yon (1984) Biochem. J. 221, 281-287]. The protective effect by the ligand pairs aspartate/phosphate and succinate/carbamoyl phosphate, which operates only against trypsin, is concluded to be due to local shielding of essential lysine or arginine residues in the aspartate-binding pocket of the active site, to which aspartate (or its analogue, succinate) can only bind as part of a ternary complex.
机译:研究了配体介导的胰蛋白酶对纯麦胚天冬氨酸转氨甲酰酶的灭活作用。在所有情况下,失活显然都是一阶的,并且研​​究了配体浓度对假一阶速率常数k的影响。氨基甲酸酯磷酸酯,磷酸酯和推定的过渡态类似物N-膦酰基乙酰基-L-天门冬氨酸会增加k(迷雾化)。终产物抑制剂UMP和天冬氨酸/磷酸根和琥珀酸/氨甲酰磷酸的配体对可降低k(保护作用),但单独使用高达10 mM的天冬氨酸或琥珀酸则不会。除了由后面的配体对的保护外,还观察到所有其他配体介导的酶对链霉蛋白酶和胰凝乳蛋白酶的失活作用。电泳检查了配体介导的胰蛋白酶对多肽链断裂的作用。在氨基甲酸酯磷酸酯,磷酸酯和N-膦酰基乙酰基-L-天门冬氨酸的存在下,观察到链的轻微断裂。观察到UMP的广泛保护,显然包括所有胰蛋白酶敏感的肽键。没有发现配体对琥珀酸酯/氨基甲酸酯磷酸的显着影响。从这些观察结果可以得出结论,UMP触发了广泛的,可能是合作的向蛋白酶抗性构象的转变,而氨基甲酸酯磷酸酯类似地触发了对蛋白酶敏感的替代构象的转变。这些拮抗的构象变化可能解释了在别处报道的调节动力学作用[Yon(1984)Biochem.Biol.215:403-10。 J. 221,281-287]。结论:天冬氨酸/磷酸和琥珀酸/氨甲酰磷酸的配体对仅对胰蛋白酶起作用,其保护作用被认为是由于活性位点的天冬氨酸结合口袋中赖氨酸或精氨酸残基的局部屏蔽所致。 (或其类似物琥珀酸酯)只能作为三元复合物的一部分结合。

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    Cole, S C; Yon, R J;

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  • 年度 1984
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