首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Processing of the Phalloidin Proprotein by Prolyl Oligopeptidase from the Mushroom Conocybe albipes
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Processing of the Phalloidin Proprotein by Prolyl Oligopeptidase from the Mushroom Conocybe albipes

机译:蘑菇Conocybe albipes脯氨酰寡肽酶对鬼笔环肽原蛋白的加工

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摘要

The peptide toxins of poisonous Amanita mushrooms are bicyclic octapeptides (amatoxins) or heptapeptides (phallotoxins). In Amanita bisporigera, α-amanitin and phallacidin are synthesized as 35- and 34-amino acid proproteins, respectively, in which the amino acid sequences found in the mature toxins are flanked by conserved amino acid sequences. The presence of invariant Pro residues immediately upstream of the toxin regions and as the last predicted amino acid in the toxin regions themselves suggests that a Pro-specific peptidase is responsible for the initial post-translational processing of the Amanita toxin proproteins. We purified an enzyme from the phalloidin-producing mushroom Conocybe albipes that cleaves a synthetic 22-mer phalloidin peptide to release the mature toxin peptide (AWLATCP). Mass spectrometric analysis of the purified protein combined with isolation and sequencing of the encoding gene indicates that the responsible processing enzyme is a member of the prolyl oligopeptidase (POP) subfamily of proteases (EC 3.4.21.26). The processing enzyme was able to use the chromogenic POP substrate benzyloxycarbonyl-Gly-Pro-p-nitroanilide and was inhibited by the specific POP inhibitor benzyloxycarbonyl-Pro-prolinal. Both Pro bonds in the proprotein are cleaved by the same enzyme, with the C-terminal Pro bond cleaved first or much faster than the N-terminal Pro bond. Transient accumulation of the N-terminal intermediate indicates that cleavage is not strongly processive. A synthetic peptide representing the phallacidin proprotein was also cleaved by the POP of C. albipes, but a precursor of amanitin (which is not made by C. albipes) was cleaved inefficiently.
机译:毒伞形毒蕈蘑菇的肽毒素是双环八肽(毒素)或七肽(毒素)。在双歧鹅膏(Amanita bisporigera)中,α-amanitin和phallacidin分别被合成为35和34个氨基酸的前蛋白,其中成熟毒素中发现的氨基酸序列位于保守的氨基酸序列的两侧。毒素区域上游紧随不变的Pro残基的存在,以及毒素区域本身中最后被预测的氨基酸,提示Pro特异的肽酶负责鹅膏菌毒素原蛋白的初步翻译后加工。我们从生产鬼笔环肽的蘑菇松柏中纯化了一种酶,该酶裂解了合成的22-mer鬼笔环肽以释放成熟的毒素肽(AWLATCP)。纯化蛋白的质谱分析与编码基因的分离和测序相结合,表明负责的加工酶是蛋白酶的脯氨酰寡肽酶(POP)亚家族的成员(EC 3.4.21.26)。该加工酶能够使用发色的POP底物苄氧基羰基-Gly-Pro-对硝基苯胺,并被特定的POP抑制剂苄氧基羰基-Pro-脯氨酸抑制。原蛋白中的两个Pro键均被相同的酶切割,C端Pro键首先被切割,或者比N端Pro键更快地被切割。 N端中间体的短暂积累表明切割不是很强的过程。代表鬼笔环肽原蛋白的合成肽也被C. albipes的POP切割,但金刚霉素的前体(不是C. albipes制造)被低效地切割。

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