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首页> 外文期刊>Biochemistry >Mechanism for Activation of Mouse Mast Cell Tryptase: Dependence on Heparin and Acidic pH for Formation of Active Tetramers of Mouse Mast Cell Protease 6
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Mechanism for Activation of Mouse Mast Cell Tryptase: Dependence on Heparin and Acidic pH for Formation of Active Tetramers of Mouse Mast Cell Protease 6

机译:激活小鼠肥大细胞类胰蛋白酶的机制:依赖肝素和酸性pH来形成小鼠肥大细胞蛋白酶6的活性四聚体。

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摘要

Tryptase, a serine protease with trypsin-like substrate cleavage properties, is one of the key effector molecules during allergic inflammation. It is stored in large quantities in the mast cell secretory granules in complex with heparin proteglycan, and these complexes are released during mast cell degranulation. In the present paper, we have studied the mechanism for tryptase activation. Recombinant mouse tryptase, mouse mast cell protease 6 (mMCP-6), was produced in a mammalian expression system. The mMCP-6 fusion proten contained an N-terminal 6×His tag followed by an enterokinase (EK) site replacing the native activation peptide (6×His-EK-mMCP-6). In the absence of heparin, barely detectable enzyme activity was obtained after enterokinase cleavage of 6×His-EK-mMCP-6 over a pH range of 5.5-7.5. However, when heparin was present, 6×His-EK-mMCP-6 yielded active enzyme when enterokinase cleavage was performed at pH 5.5-6.0 but not at neutral pH. Affinity chromatography analysis showed that mMCP-6 bound strongly to heparin-Sepharose at pH 6.0 but not at neutral pH. After enterokinase cleavage of the sample at pH 6.0, mMCP-6 occurred in inactive monomeric form as shown by EPLC analysis on a Superdex 200 column. When heparin was added at pH 6.0, enzymatically active higher molecular weight complexes were formed, e.g., a dominant ~200 kDa complex that may correspond to tryptase tetramers. No formation of active tetramers was observed at neutral pH. When injected intraperitoneally, mMCP-6 together with heparin caused neutrophil influx, but no signs of inflammation were seen in the absence of heparin. The present paper thus indicates a crucial role for heparin in the formation of active mast cell tryptase.
机译:类胰蛋白酶,具有胰蛋白酶样底物裂解特性的丝氨酸蛋白酶,是变应性炎症过程中的关键效应分子之一。它与肝素蛋白聚糖复合物大量存储在肥大细胞分泌颗粒中,这些复合物在肥大细胞脱粒过程中释放。在本文中,我们研究了类胰蛋白酶激活的机制。在哺乳动物表达系统中产生了重组小鼠类胰蛋白酶,小鼠肥大细胞蛋白酶6(mMCP-6)。 mMCP-6融合蛋白包含一个N端6xHis标签,然后是一个肠激酶(EK)位点,取代了天然激活肽(6xHis-EK-mMCP-6)。在不存在肝素的情况下,在5.5-7.5的pH范围内切割6×His-EK-mMCP-6的肠激酶后,几乎无法检测到酶活性。但是,当存在肝素时,在pH 5.5-6.0而不是中性pH下进行肠激酶裂解时,6×His-EK-mMCP-6会产生活性酶。亲和色谱分析表明,mMCP-6在pH 6.0时与肝素-琼脂糖牢固结合,而在中性pH时不结合。如在Superdex 200色谱柱上的EPLC分析所示,在pH 6.0的肠激酶切割样品后,mMCP-6以非活性单体形式出现。当在pH 6.0下加入肝素时,会形成具有酶促活性的较高分子量的复合物,例如占主导地位的〜200 kDa复合物,可能对应于类胰蛋白酶四聚体。在中性pH下未观察到活性四聚体的形成。腹膜内注射时,mMCP-6与肝素一起引起中性粒细胞流入,但是在没有肝素的情况下未见炎症迹象。因此,本论文表明肝素在活性肥大细胞类胰蛋白酶形成中的关键作用。

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