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Catalysis of serine oligopeptidases is controlled by a gating filter mechanism

机译:丝氨酸寡肽酶的催化作用由门控过滤机制控制

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摘要

Proteases have a variety of strategies for selecting substrates in order to prevent uncontrolled protein degradation. A recent crystal structure determination of prolyl oligopeptidase has suggested a way for substrate selection involving an unclosed seven-bladed β-propeller domain. We have engineered a disulfide bond between the first and seventh blades of the propeller, which resulted in the loss of enzymatic activity. These results provided direct evidence for a novel strategy of regulation in which oscillating propeller blades act as a gating filter during catalysis, letting small peptide substrates into the active site while excluding large proteins to prevent accidental proteolysis.
机译:蛋白酶具有多种选择底物的策略,以防止不受控制的蛋白质降解。最近对脯氨酰寡肽酶的晶体结构测定已经提出了一种用于底物选择的方法,该方法涉及未封闭的七叶β-螺旋桨结构域。我们在螺旋桨的第一叶片和第七叶片之间设计了二硫键,这导致了酶活性的损失。这些结果为新颖的调节策略提供了直接的证据,在该策略中,振荡的螺旋桨叶片在催化过程中充当门控过滤器,使小的肽底物进入活性位点,同时排除大的蛋白质以防止意外的蛋白水解。

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