Larcher G, Cimon B, Symoens F, Tronchin G, Chabasse D, Bouchara J P
Groupe d'Etude des Interactions, Hôte-Parasite, Laboratoire de Parasitologie-Mycologie, Centre Hospitalier Universitaire, Angers, France.
Biochem J. 1996 Apr 1;315 ( Pt 1)(Pt 1):119-26. doi: 10.1042/bj3150119.
An extracellular proteinase produced by the filamentous fungus Scedosporium apiospermum has been purified and characterized. Initially, in vitro conditions for enzyme synthesis were investigated. The highest yield of enzyme production was obtained when the fungus was cultivated in modified Czapek-Dox liquid medium supplemented with 0.1% bacteriological peptone and 1% (w/v) glucose as the nitrogen and carbon sources respectively. Purification to homogeneity of the proteinase was accomplished by (NH4)2SO4 precipitation, followed by gel filtration through Sephadex G-75 and finally affinity chromatography through immobilized phenylalanine. Analysis of the purified enzyme by SDS/PAGE revealed a single polypeptide chain with an apparent molecular mass of 33 kDa. Further investigation of its physical and biochemical properties disclosed numerous similarities with those of the previously described serine proteinase of Aspergillus fumigatus. The enzyme was not glycosylated and its pI was 9.3. Proteinase activity was optimum between 37 and 50 degrees C and at pH 9.0, but remained high within a large range of pH values between 7 and 11. The inhibition profile and N-terminal amino acid sequencing confirmed that this enzyme belongs to the subtilisin family of serine proteinases. In agreement with this, the specific synthetic substrate N-succinyl-Ala-Ala-Pro-Phe-p-nitroanilide proved to be an excellent substrate for the proteinase with an estimated Km of 0.35 mM. Like the alkaline proteinase of A. fumigatus, this enzyme was able to degrade human fibrinogen, and thus may act as a mediator of the severe chronic bronchopulmonary inflammation from which cystic fibrosis patients suffer.
丝状真菌阿萨希丝孢酵母产生的一种细胞外蛋白酶已被纯化和鉴定。首先,研究了酶合成的体外条件。当真菌在改良的察氏液体培养基中培养时,分别添加0.1%细菌蛋白胨和1%(w/v)葡萄糖作为氮源和碳源,可获得最高的酶产量。通过硫酸铵沉淀,然后经Sephadex G - 75凝胶过滤,最后通过固定化苯丙氨酸进行亲和层析,将蛋白酶纯化至同质。通过SDS/PAGE对纯化后的酶进行分析,显示出一条表观分子量为33 kDa的单多肽链。对其物理和生化特性的进一步研究揭示了与先前描述的烟曲霉丝氨酸蛋白酶有许多相似之处。该酶未被糖基化,其pI为9.3。蛋白酶活性在37至50摄氏度之间以及pH 9.0时最佳,但在7至11的较大pH值范围内仍保持较高活性。抑制谱和N端氨基酸测序证实该酶属于丝氨酸蛋白酶的枯草杆菌蛋白酶家族。与此一致的是,特定的合成底物N - 琥珀酰 - Ala - Ala - Pro - Phe - 对硝基苯胺被证明是该蛋白酶的优良底物,估计Km为0.35 mM。与烟曲霉的碱性蛋白酶一样,这种酶能够降解人纤维蛋白原,因此可能是囊性纤维化患者所患严重慢性支气管肺部炎症的介质。