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来自两歧双歧杆菌NCIMB41171的四种β-半乳糖苷酶的比较分析:纯化及生化特性研究

Comparative analysis of four beta-galactosidases from Bifidobacterium bifidum NCIMB41171: purification and biochemical characterisation.

作者信息

Goulas Theodoros, Goulas Athanasios, Tzortzis George, Gibson Glenn R

机构信息

Department of Food Biosciences, School of Chemistry, Food Biosciences and Pharmacy, The University of Reading, P.O. Box 226, Whiteknights, Reading RG6 6AP, UK.

出版信息

Appl Microbiol Biotechnol. 2009 Apr;82(6):1079-88. doi: 10.1007/s00253-008-1795-5. Epub 2008 Dec 20.

Abstract

Four different beta-galactosidases (previously named BbgI, BbgII, BbgIII and BbgIV) from Bifidobacterium bifidum NCIMB41171 were overexpressed in Escherichia coli, purified to homogeneity and their biochemical properties and substrate preferences comparatively analysed. BbgI was forming a hexameric protein complex of 875 kDa, whereas BbgII, BbgIII and BbgIV were dimers with native molecular masses of 178, 351 and 248 kDa, respectively. BbgII was the only enzyme that preferred acidic conditions for optimal activity (pH 5.4-5.8), whereas the other three exhibited optima in more neutral pH ranges (pH 6.4-6.8). Na(+) and/or K(+) ions were prerequisite for BbgI and BbgIV activity in Bis-Tris-buffered solutions, whereas Mg(++) was strongly activating them in phosphate-buffered solutions. BbgII and BbgIII were slightly influenced from the presence or absence of cations, with Mg(++), Mn(++) and Ca(++) ions exerting the most positive effect. Determination of the specificity constants (k(cat)/K(m)) clearly indicated that BbgI (6.11 x 10(4) s(-1) M(-1)), BbgIII (2.36 x 10(4) s(-1) M(-1)) and especially BbgIV (4.01 x 10(5) s(-1) M(-1)) are highly specialised in the hydrolysis of lactose, whereas BbgII is more specific for beta-D-(1-->6) galactobiose (5.59 x 10(4) s(-1) M(-1)) than lactose (1.48 x 10(3) s(-1) M(-1)). Activity measurements towards other substrates (e.g. beta-D-(1-->6) galactobiose, beta-D-(1-->4) galactobiose, beta-D-(1-->4) galactosyllactose, N-acetyllactosamine, etc.) indicated that the beta-galactosidases were complementary to each other by hydrolysing different substrates and thus contributing in a different way to the bacterial physiology.

摘要

来自两歧双歧杆菌NCIMB41171的四种不同的β-半乳糖苷酶(先前命名为BbgI、BbgII、BbgIII和BbgIV)在大肠杆菌中过表达,纯化至同质,并对其生化特性和底物偏好进行了比较分析。BbgI形成了一个875 kDa的六聚体蛋白复合物,而BbgII、BbgIII和BbgIV是二聚体,天然分子量分别为178、351和248 kDa。BbgII是唯一一种在酸性条件下(pH 5.4 - 5.8)活性最佳的酶,而其他三种酶在更中性的pH范围内(pH 6.4 - 6.8)表现出最佳活性。在Bis-Tris缓冲溶液中,Na(+)和/或K(+)离子是BbgI和BbgIV活性的先决条件,而在磷酸盐缓冲溶液中,Mg(++)对它们有强烈的激活作用。BbgII和BbgIII受阳离子存在与否的影响较小,其中Mg(++)、Mn(++)和Ca(++)离子的正向作用最为明显。特异性常数(k(cat)/K(m))的测定清楚地表明,BbgI(6.11×10⁴ s⁻¹ M⁻¹)、BbgIII(2.36×10⁴ s⁻¹ M⁻¹),尤其是BbgIV(4.01×10⁵ s⁻¹ M⁻¹)在乳糖水解方面具有高度特异性,而BbgII对β-D-(1→6)半乳糖二糖(5.59×10⁴ s⁻¹ M⁻¹)的特异性高于乳糖(1.48×10³ s⁻¹ M⁻¹)。对其他底物(如β-D-(1→6)半乳糖二糖、β-D-(1→4)半乳糖二糖、β-D-(1→4)半乳糖基乳糖、N-乙酰乳糖胺等)的活性测量表明,这些β-半乳糖苷酶通过水解不同的底物相互补充,从而以不同的方式对细菌生理发挥作用。

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