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Substrate Specificity and Possible Heterologous Targets of Phytaspase a Plant Cell Death Protease

机译:植酸酶(一种植物细胞死亡蛋白酶)的底物特异性和可能的​​异源靶标

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摘要

Plants lack aspartate-specific cell death proteases homologous to animal caspases. Instead, a subtilisin-like serine-dependent plant protease named phytaspase shown to be involved in the accomplishment of programmed death of plant cells is able to hydrolyze a number of peptide-based caspase substrates. Here, we determined the substrate specificity of rice (Oryza sativa) phytaspase by using the positional scanning substrate combinatorial library approach. Phytaspase was shown to display an absolute specificity of hydrolysis after an aspartic acid residue. The preceding amino acid residues, however, significantly influence the efficiency of hydrolysis. Efficient phytaspase substrates demonstrated a remarkable preference for an aromatic amino acid residue in the P3 position. The deduced optimum phytaspase recognition motif has the sequence IWLD and is strikingly hydrophobic. The established pattern was confirmed through synthesis and kinetic analysis of cleavage of a set of optimized peptide substrates. An amino acid motif similar to the phytaspase cleavage site is shared by the human gastrointestinal peptide hormones gastrin and cholecystokinin. In agreement with the established enzyme specificity, phytaspase was shown to hydrolyze gastrin-1 and cholecystokinin at the predicted sites in vitro, thus destroying the active moieties of the hormones.
机译:植物缺乏与动物胱天蛋白酶同源的天冬氨酸特异性细胞死亡蛋白酶。取而代之的是,被证明参与完成植物细胞程序性死亡的枯草杆菌蛋白酶样丝氨酸依赖性植物蛋白酶phytaspase能够水解许多基于肽的胱天蛋白酶底物。在这里,我们通过使用位置扫描底物组合文库方法确定了水稻(Oryza sativa)植酸酶的底物特异性。谷胱甘肽酶显示出天冬氨酸残基后绝对的水解特异性。然而,前面的氨基酸残基显着影响水解效率。高效植酸酶底物表现出对P3位芳香族氨基酸残基的显着偏好。推导的最佳肌醇八磷酸酶识别基序具有序列IWLD,并且具有明显的疏水性。通过合成和动力学分析一组优化的肽底物,确定了建立的模式。人胃肠道肽激素胃泌素和胆囊收缩素共有与植酸酶裂解位点相似的氨基酸基序。与确定的酶特异性一致,在体外预测的位点显示了肌醇六磷酸酶水解胃泌素1和胆囊收缩素,从而破坏了激素的活性部分。

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