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热双孢菌尿酸氧化酶的结构和生化见解,用于高尿酸血症和痛风治疗。

Structural and biochemical insights into a hyperthermostable urate oxidase from Thermobispora bispora for hyperuricemia and gout therapy.

机构信息

Genome and Systems Biology Degree Program, National Taiwan University and Academia Sinica, Taipei 10617, Taiwan; Department of Agricultural Chemistry, National Taiwan University, Taipei 10617, Taiwan.

Taipei First Girl High School, Taipei 100006, Taiwan.

出版信息

Int J Biol Macromol. 2021 Oct 1;188:914-923. doi: 10.1016/j.ijbiomac.2021.08.081. Epub 2021 Aug 14.

Abstract

Microbial urate oxidase has emerged as a potential source of therapeutic properties for hyperuricemia in arthritic gout and renal disease. The thermostability and long-term thermal tolerance of the enzyme need to be established to prolong its therapeutic effects. Here, we present the biochemical and structural aspects of a hyperthermostable urate oxidase (TbUox) from the thermophilic microorganism Thermobispora bispora. Enzymatic characterization of TbUox revealed that it was active over a wide range of temperatures, from 30 to 70 °C, with optimal activity at 65 °C and pH 8.0, which suggests its applicability under physiological conditions. Moreover, TbUox exhibits high thermostability from 10 to 65 °C, with Tm of 70.3 °C and near-neutral pH stability from pH 7.0 to 8.0 and high thermal tolerance. The crystal structures of TbUox revealed a distinct feature of the C-terminal loop extensions that may help with protein stability via inter-subunit interactions. In addition, the high thermal tolerance of TbUox may be contributed by the extensive inter-subunit contacts via salt bridges, hydrogen bonds, and hydrophobic interactions. The findings in this study provide a molecular basis for the thermophilic TbUox urate oxidase for application in hyperuricemia and gout therapy.

摘要

微生物尿酸氧化酶已成为治疗关节炎痛风和肾病高尿酸血症的潜在来源。为了延长其治疗效果,需要确定该酶的热稳定性和长期耐热性。本文介绍了嗜热微生物Thermobispora bispora 中一种尿酸氧化酶(TbUox)的生化和结构特征。对 TbUox 的酶学特性研究表明,它在很宽的温度范围内(30-70°C)都具有活性,最佳活性温度为 65°C,最佳 pH 值为 8.0,这表明它在生理条件下具有适用性。此外,TbUox 在 10-65°C 之间表现出很高的热稳定性,Tm 为 70.3°C,在 pH 值为 7.0-8.0 之间具有近中性 pH 值稳定性和较高的耐热性。TbUox 的晶体结构显示了 C 末端环延伸的独特特征,这可能通过亚基间相互作用有助于蛋白质稳定性。此外,TbUox 的高热耐受性可能归因于通过盐桥、氢键和疏水相互作用的广泛的亚基间接触。本研究为尿酸氧化酶在高尿酸血症和痛风治疗中的应用提供了分子基础。

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