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豌豆β-半乳糖苷酶 pH 诱导构象转变及其多聚化的机制研究。

Insights into pH-induced conformational transition of β-galactosidase from Pisum sativum leading to its multimerization.

机构信息

School of Biotechnology, Faculty of Science, Banaras Hindu University, Varanasi 221005, India.

出版信息

Appl Biochem Biotechnol. 2010 Dec;162(8):2294-312. doi: 10.1007/s12010-010-9003-3. Epub 2010 Jun 13.

Abstract

Although β-galactosidases are physiologically a very important enzyme and have may therapeutics applications, very little is known about the stability and the folding aspects of the enzyme. We have used β-galactosidase from Pisum sativum (PsBGAL) as model system to investigate stability, folding, and function relationship of β-galactosidases. PsBGAL is a vacuolar protein which has a tendency to multimerize at acidic pH with protein concentration ≥100 μg mL⁻¹ and dissociates into its subunits above neutral pH. It exhibits maximum activity as well as stability under acidic conditions. Further, it has different conformational orientations and core secondary structures at different pH. Substantial predominance of β-content and interfacial interactions through Trp residues play crucial role in pH-dependent multimerization of enzyme. Equilibrium unfolding of PsBGAL at acidic pH follows four-state model when monitored by changes in the secondary structure with two intermediates: one resembling to molten globule-like state while unfolding seen from activity and tertiary structure of PsBGAL fits to two-state model. Unfolding of PsBGAL at higher pH always follows two-state model. Furthermore, unfolding of PsBGAL reveals that it has at least two domains: α/β barrel containing catalytic site and the other is rich in β-content responsible for enzyme multimerization.

摘要

虽然β-半乳糖苷酶在生理上是一种非常重要的酶,并且具有许多治疗应用,但对该酶的稳定性和折叠方面知之甚少。我们使用豌豆(Pisum sativum)来源的β-半乳糖苷酶(PsBGAL)作为模型系统来研究β-半乳糖苷酶的稳定性、折叠和功能关系。PsBGAL 是一种液泡蛋白,在酸性 pH 下具有倾向于多聚化的特性,蛋白浓度≥100μg/mL 时会发生多聚化,在中性 pH 以上时会解离成其亚基。它在酸性条件下表现出最大的活性和稳定性。此外,它在不同 pH 下具有不同的构象取向和核心二级结构。β-含量的大量优势和通过色氨酸残基的界面相互作用在酶的 pH 依赖性多聚化中起着关键作用。当用二级结构的变化监测 PsBGAL 在酸性 pH 下的平衡解折叠时,遵循四态模型,有两个中间体:一个类似于无规卷曲样状态,而从活性和 PsBGAL 的三级结构来看,解折叠符合二态模型。PsBGAL 在较高 pH 下的解折叠始终遵循二态模型。此外,PsBGAL 的解折叠表明它至少有两个结构域:含有催化位点的α/β桶和另一个富含β-含量的结构域,负责酶的多聚化。

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