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Arg213 和 Arg337 对萤火虫荧光素酶的动力学和结构稳定性的影响。

Implication of Arg213 and Arg337 on the kinetic and structural stability of firefly luciferase.

机构信息

Department of Biotechnology, International Center for Science, High Technology & Environmental Sciences, Kerman, Iran.

出版信息

Int J Biol Macromol. 2013 Jan;52:157-63. doi: 10.1016/j.ijbiomac.2012.09.007. Epub 2012 Sep 15.

Abstract

Possible roles of two different Arginine (Arg; R) 213 and 337 on kinetic and structural stability of Photinus pyralis luciferase have been investigated using thermal and chemical denaturation studies. This enzyme is highly sensitive to protease digestion and temperature, which limits its fieldability, particularly for in vivo imaging. In order to generate more stable luciferases against trypsin digestion, site-directed mutagenesis was conducted to block two representative tryptic sites on the surface of N-terminal domain, via substitution of Arg213 and Arg337 by methionine (Met; M) and glutamine (Gln; Q), respectively [A. Riahi-Madvar, S. Hosseinkhani, Protein engineering, design and selection 22 (2009) 655-663]. The improvement of mutant enzymes stability against protease hydrolysis may be attributed to the more rigidity of the enzyme structure upon mutations, as can be deducted from elevated levels of m(U-N) values and decrease of activation energy. Furthermore, mutation at position 337 which is accompanied with more alteration on the basic kinetic properties relative to mutation at position 213, revealed the high values of the ΔG(H(2)O), half-time of inactivation at 30°C and T(m) for R337Q where Arg213 is maintained in structure. Based on the results, it can be concluded that whilst Arg213 affects structural stability, Arg337 is critical for kinetic stability.

摘要

已经通过热变性和化学变性研究调查了两个不同的精氨酸(Arg;R)213 和 337 在 Photinus pyralis 荧光素酶的动力学和结构稳定性中的可能作用。该酶对蛋白酶消化和温度非常敏感,这限制了它的应用范围,特别是在体内成像方面。为了生成对胰蛋白酶消化更稳定的荧光素酶,通过取代 Arg213 和 Arg337 为蛋氨酸(Met;M)和谷氨酰胺(Gln;Q),进行了定点突变以阻断 N-末端结构域表面上的两个代表性胰蛋白酶位点[A. Riahi-Madvar,S. Hosseinkhani,蛋白质工程,设计和选择 22(2009)655-663]。突变酶对蛋白酶水解稳定性的提高可能归因于突变后酶结构的刚性增加,这可以从 m(U-N) 值的升高和活化能的降低中推断出来。此外,与位置 213 的突变相比,位置 337 的突变导致基本动力学特性发生了更大的改变,揭示了 R337Q 的 ΔG(H(2)O)、30°C 时失活的半衰期和 T(m)值较高,而 Arg213 在结构中保持不变。根据结果,可以得出结论,虽然 Arg213 影响结构稳定性,但 Arg337 对动力学稳定性至关重要。

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