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烟曲霉胱硫醚γ-裂解酶响应各种反应效应物的生化稳定性和分子动力学特征

Biochemical stability and molecular dynamic characterization of Aspergillus fumigatus cystathionine γ-lyase in response to various reaction effectors.

作者信息

El-Sayed Ashraf S A, Abdel-Azeim Safwat, Ibrahim Hend M, Yassin Marwa A, Abdel-Ghany Salah E, Esener Sadik, Ali Gul Shad

机构信息

Microbiology and Botany Department, Faculty of Science, Zagazig University, Zagazig 44519, Egypt; Mid-Florida Research and Education Center, University of Florida/ Institute of Food and Agricultural Sciences, Apopka, FL, USA.

Kaust Catalysis Center, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Enzyme Microb Technol. 2015 Dec;81:31-46. doi: 10.1016/j.enzmictec.2015.08.004. Epub 2015 Aug 11.

Abstract

Cystathionine γ-lyase (CGL) is a key enzyme in the methionine-cysteine cycle in all living organisms forming cysteine, α-ketobutyrate and ammonia via homocysteine and cystathionine intermediates. Although, human and plant CGLs have been extensively studied at the molecular and mechanistic levels, there has been little work on the molecular and catalytic properties of fungal CGL. Herein, we studied in detail for the first time the molecular and catalytic stability of Aspergillus fumigatus CGL, since conformational instability, inactivation and structural antigenicity are the main limitations of the PLP-dependent enzymes on various therapeutic uses. We examined these properties in response to buffer compositions, stabilizing and destabilizing agents using Differential Scanning Fluorometery (DSF), steady state and gel-based fluorescence of the intrinsic hydrophobic core, stability of internal aldimine linkage and catalytic properties. The activity of the recombinant A. fumigatus CGL was 13.8U/mg. The melting temperature (Tm) of CGL in potassium phosphate buffer (pH 7.0-8.0) was 73.3°C, with ∼3°C upshifting in MES and sodium phosphate buffers (pH 7.0). The conformational thermal stability was increased in potassium phosphate, sodium phosphate and MES buffers, in contrast to Tris-HCl, HEPES (pH 7.0) and CAPS (pH 9.0-10.0). The thermal stability and activity of CGL was slightly increased in the presence of trehalose and glycerol that might be due to hydration of the enzyme backbone, unlike the denaturing effect of GdmCl and urea. Modification of surface CGL glutamic and aspartic acids had no significant effect on the enzyme conformational and catalytic stability. Molecular modeling and dynamics simulations unveil the high conformational stability of the overall scaffold of CGL with high flexibility at the non-structural regions. CGL structure has eight buried Trp residues, which are reoriented to the enzyme surface and get exposed to the solvent under perturbation of destabilizers. Furthermore, electrostatic calculations of selected snapshots of CGL 3D structure under different experimental conditions showed a remarkable differences on the polarity of the enzyme surface.

摘要

胱硫醚γ-裂合酶(CGL)是所有生物体内蛋氨酸-半胱氨酸循环中的关键酶,它通过同型半胱氨酸和胱硫醚中间体生成半胱氨酸、α-酮丁酸和氨。尽管人和植物的CGL已在分子和机制层面得到广泛研究,但关于真菌CGL的分子和催化特性的研究却很少。在此,我们首次详细研究了烟曲霉CGL的分子和催化稳定性,因为构象不稳定性、失活和结构抗原性是依赖磷酸吡哆醛的酶在各种治疗用途中的主要限制因素。我们使用差示扫描荧光法(DSF)、内在疏水核心的稳态和基于凝胶的荧光、内部醛亚胺键的稳定性以及催化特性,研究了这些特性对缓冲液组成、稳定剂和去稳定剂的响应。重组烟曲霉CGL的活性为13.8U/mg。CGL在磷酸钾缓冲液(pH 7.0 - 8.0)中的熔解温度(Tm)为73.3°C,在MES和磷酸钠缓冲液(pH 7.0)中升高约3°C。与Tris - HCl、HEPES(pH 7.0)和CAPS(pH 9.0 - 10.0)相比,在磷酸钾、磷酸钠和MES缓冲液中构象热稳定性增加。在海藻糖和甘油存在下,CGL的热稳定性和活性略有增加,这可能是由于酶主链的水合作用,与GdmCl和尿素的变性作用不同。表面CGL谷氨酸和天冬氨酸的修饰对酶的构象和催化稳定性没有显著影响。分子建模和动力学模拟揭示了CGL整体支架具有高构象稳定性,在非结构区域具有高灵活性。CGL结构有八个埋藏的色氨酸残基,在去稳定剂的扰动下,它们会重新定向到酶表面并暴露于溶剂中。此外,在不同实验条件下对CGL 3D结构的选定快照进行静电计算,结果表明酶表面的极性存在显著差异。

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