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詹氏甲烷嗜热球菌腺苷酸琥珀酸合成酶:催化活性和结构稳定性的温度依赖性研究

Methanocaldococcus jannaschii adenylosuccinate synthetase: studies on temperature dependence of catalytic activity and structural stability.

作者信息

Mehrotra Sonali, Balaram Hemalatha

机构信息

Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore-560064, India.

出版信息

Biochim Biophys Acta. 2008 Dec;1784(12):2019-28. doi: 10.1016/j.bbapap.2008.08.008. Epub 2008 Aug 23.

Abstract

Two important attributes of enzymes produced by thermophilic organisms are thermophilicity and structural stability. This manuscript discusses the characterization of these two aspects in adenylosuccinate synthetase from the thermophilic archaeon, Methanocaldococcus jannaschii. Adenylosuccinate synthetase catalyzes the formation of succinyl-AMP from IMP and aspartate with the simultaneous conversion of GTP to GDP. Temperature dependence of M. jannaschii AdSS (MjAdSS) catalysis exhibited a biphasic Arrhenius Plot with a transition at 40 degrees C. Pre-steady-state kinetics as a function of temperature indicated a change in rate determining step of the reaction across the inflection point. Slow release of products from the enzyme active site probably accounts for the thermophilicity of MjAdSS. Thermal unfolding of MjAdSS exhibited a T(m) of 85 degrees C, with the process being only partially reversible. Stability of MjAdSS assessed by equilibrium unfolding revealed the robustness of the secondary and tertiary structure of the enzyme which remained intact even at 8 M concentration of urea. Guanidinium chloride induced denaturation of MjAdSS permitted estimation of thermodynamic parameters. The unfolding profiles could be described as a composite of atleast two distinct transitions, with a stable intermediate in the unfolding pathway.

摘要

嗜热生物产生的酶的两个重要特性是嗜热性和结构稳定性。本手稿讨论了来自嗜热古菌詹氏甲烷球菌的腺苷酸琥珀酸合成酶在这两个方面的特征。腺苷酸琥珀酸合成酶催化由肌苷酸(IMP)和天冬氨酸形成琥珀酰-AMP,同时将鸟苷三磷酸(GTP)转化为鸟苷二磷酸(GDP)。詹氏甲烷球菌腺苷酸琥珀酸合成酶(MjAdSS)催化的温度依赖性呈现出双相阿伦尼乌斯曲线,在40℃有一个转变点。作为温度函数的预稳态动力学表明,反应的速率决定步骤在拐点处发生了变化。产物从酶活性位点的缓慢释放可能是MjAdSS嗜热性的原因。MjAdSS的热解折叠呈现出85℃的熔点(T(m)),且该过程仅部分可逆。通过平衡解折叠评估的MjAdSS稳定性揭示了该酶二级和三级结构的稳健性,即使在8M尿素浓度下仍保持完整。氯化胍诱导的MjAdSS变性允许估算热力学参数。解折叠曲线可描述为至少两个不同转变的组合,在解折叠途径中有一个稳定的中间体。

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