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通过在盾形蚁巢伞培养滤液中纤维二糖酶-蔗糖酶聚集来稳定和提高低摩尔质量纤维二糖酶的催化活性

Stabilization and improvement of catalytic activity of a low molar mass cellobiase by cellobiase-sucrase aggregation in the culture filtrate of Termitomyces clypeatus.

作者信息

Saha Rina, Roy Sujata Burman, Sengupta S

机构信息

Department of Applied Biochemistry, Indian Institute of Chemical Biology, 4, Raja SC Mullick Road, Calcutta 700 032, India.

出版信息

Biotechnol Prog. 2002 Nov-Dec;18(6):1240-8. doi: 10.1021/bp020106t.

Abstract

The extracellular cellobiase (EC 3.2.1.21) of Termitomyces clypeatus separated in two protein fractions when culture filtrate or ammonium sulfate precipitated proteins were chromatographed on BioGel P-200 column. During purification of cellobiase (CBS) from the lower molar mass (LMM) protein fraction, the enzyme behaved like a low molecular weight multimeric protein. The purified enzyme gave a single 56 kDa band in SDS-PAGE but ladderlike bands (14, 28, 42, and 56 kDa) on denaturation by reducing-SDS and urea. The protein, however, dissociated on dilution and protomeric (14 kDa) and multimeric forms (28 and 60 kDa) were eluted separately during HPGPLC. Specific activity of CBS gradually decreased as the molar mass of the enzyme was lowered in different eluted peaks. Protein present in all CBS pool fractions had the same amino acid composition and all displayed the same, single protein peak in reverse-phase HPLC and 56 kDa band in SDS-PAGE. Thus, T. clypeatus CBS was a multimeric 14 kDa protein that was optimally active as a tetramer. CBS purified from the higher molar mass fraction (HMM) as a SDS-PAGE homogeneous 110-kDa protein did not dissociate on dilution or by SDS-urea. The purified protein was a protein aggregate as CBS consistently contained 20 +/- 5% sucrase (SUC) Units in the preparation. The aggregate resolved during reverse-phase chromatography on a C(4) column, and an additional protein peak other than CBS was detected. The aggregated CBS had a higher temperature optimum and was more stable toward thermal and chemical denaturations than SUC-free CBS. Increase of stability and catalytic activity of CBS by aggregation with SUC was much higher than those by the multimerization of CBS itself. All of these observations for the first time suggested that the heterologous protein-protein aggregation, observed for a long time for fungal enzymes, might have a significant role in modulating physicochemical properties of the extracellular enzyme.

摘要

当在BioGel P - 200柱上对培养滤液或硫酸铵沉淀的蛋白质进行色谱分析时,柱顶红菇(Termitomyces clypeatus)的胞外纤维二糖酶(EC 3.2.1.21)分离成两个蛋白质组分。在从低分子量(LMM)蛋白质组分中纯化纤维二糖酶(CBS)的过程中,该酶表现得像一种低分子量多聚体蛋白质。纯化后的酶在SDS - PAGE中呈现出一条单一的56 kDa条带,但在经还原SDS和尿素变性后出现梯状条带(14、28、42和56 kDa)。然而,该蛋白质在稀释时会解离,并且在高效凝胶渗透色谱(HPGPLC)过程中,单体形式(14 kDa)和多聚体形式(28和60 kDa)会被分别洗脱。随着酶在不同洗脱峰中的分子量降低,CBS的比活性逐渐下降。所有CBS收集组分中的蛋白质具有相同的氨基酸组成,并且在反相HPLC中均显示相同的单一蛋白质峰,在SDS - PAGE中显示56 kDa条带。因此,柱顶红菇CBS是一种14 kDa的多聚体蛋白质,作为四聚体时活性最佳。从高分子量组分(HMM)中纯化得到的CBS是一种SDS - PAGE均一的110 kDa蛋白质,在稀释或经SDS - 尿素处理时不会解离。纯化后的蛋白质是一种蛋白质聚集体,因为CBS制剂中始终含有20±5%的蔗糖酶(SUC)活性单位。该聚集体在C(4)柱上进行反相色谱分析时会分解,并且检测到除CBS之外的另一个蛋白质峰。与不含SUC的CBS相比,聚集的CBS具有更高的最适温度,并且对热变性和化学变性更稳定。通过与SUC聚集来提高CBS的稳定性和催化活性比CBS自身多聚化的效果要高得多。所有这些观察结果首次表明,长期以来在真菌酶中观察到的异源蛋白质 - 蛋白质聚集可能在调节胞外酶的物理化学性质方面具有重要作用。

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