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热、化学和 pH 值诱导的多聚β-半乳糖苷酶变性揭示了多种展开途径。

Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.

机构信息

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

出版信息

PLoS One. 2012;7(11):e50380. doi: 10.1371/journal.pone.0050380. Epub 2012 Nov 21.

Abstract

BACKGROUND

In this case study, we analysed the properties of unfolded states and pathways leading to complete denaturation of a multimeric chick pea β-galactosidase (CpGAL), as obtained from treatment with guanidium hydrochloride, urea, elevated temperature and extreme pH.

METHODOLOGY/PRINCIPAL FINDINGS: CpGAL, a heterodimeric protein with native molecular mass of 85 kDa, belongs to α+β class of protein. The conformational stability and thermodynamic parameters of CpGAL unfolding in different states were estimated and interpreted using circular dichroism and fluorescence spectroscopic measurements. The enzyme was found to be structurally and functionally stable in the entire pH range and upto 50 °C temperature. Further increase in temperature induces unfolding followed by aggregation. Chemical induced denaturation was found to be cooperative and transitions were irreversible, non-coincidental and sigmoidal. Free energy of protein unfolding (ΔG(0)) and unfolding constant (K(obs)) were also calculated for chemically denatured CpGAL.

SIGNIFICANCE

The protein seems to use different pathways for unfolding in different environments and is a classical example of how the environment dictates the path a protein might take to fold while its amino acid sequence only defines its final three-dimensional conformation. The knowledge accumulated could be of immense biotechnological significance as well.

摘要

背景

在本案例研究中,我们分析了多聚体鹰嘴豆β-半乳糖苷酶(CpGAL)在盐酸胍、尿素、高温和极端 pH 处理下变性为完全变性状态的展开状态和途径的性质。

方法/主要发现:CpGAL 是一种具有 85kDa 天然分子量的杂二聚体蛋白,属于α+β 类蛋白。使用圆二色性和荧光光谱测量法评估和解释了 CpGAL 在不同状态下的构象稳定性和热力学参数。研究发现,该酶在整个 pH 范围和 50°C 温度下均具有结构和功能稳定性。进一步提高温度会诱导酶展开,随后发生聚集。化学诱导的变性是协同的,且转变是不可逆的、非巧合的和呈“S”型的。还计算了化学变性的 CpGAL 的蛋白质展开自由能(ΔG(0))和展开常数(K(obs))。

意义

该蛋白质似乎在不同环境中使用不同的途径展开,这是一个经典的例子,说明了环境如何决定蛋白质在折叠时可能采取的路径,而其氨基酸序列仅定义其最终的三维构象。积累的知识可能具有巨大的生物技术意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bba4/3503960/825ea0af681d/pone.0050380.g001.jpg

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