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嗜盐古菌沃氏嗜盐碱杆菌α-葡萄糖苷酶(MalH)的克隆与分子特征分析

Cloning and Molecular Characterization of an Alpha-Glucosidase (MalH) from the Halophilic Archaeon Haloquadratum walsbyi.

作者信息

Cuebas-Irizarry Mara F, Irizarry-Caro Ricardo A, López-Morales Carol, Badillo-Rivera Keyla M, Rodríguez-Minguela Carlos M, Montalvo-Rodríguez Rafael

机构信息

Biology Department, Box 9000, University of Puerto Rico, Mayagüez, PR 00681, USA.

Department of Immunology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Life (Basel). 2017 Nov 21;7(4):46. doi: 10.3390/life7040046.

Abstract

We report the heterologous expression and molecular characterization of the first extremely halophilic alpha-glucosidase (EC 3.2.1.20) from the archaeon . A 2349 bp region () from the C23 annotated genome was PCR-amplified and the resulting amplicon ligated into plasmid pET28b(+), expressed in Rosetta cells, and the resulting protein purified by Ni-NTA affinity chromatography. The recombinant protein showed an estimated molecular mass of 87 kDa, consistent with the expected value of the annotated protein, and an optimal activity for the hydrolysis of α-PNPG was detected at 40 °C, and at pH 6.0. Enzyme activity values were the highest in the presence of 3 M NaCl or 3-4 M KCl. However, specific activity values were two-fold higher in the presence of 3-4 M KCl when compared to NaCl suggesting a cytoplasmic localization. Phylogenetic analyses, with respect to other alpha-glucosidases from members of the class Halobacteria, showed that the MalH was most similar (up to 41%) to alpha-glucosidases and alpha-xylosidases of . Moreover, computational analyses for the detection of functional domains, active and catalytic sites, as well as 3D structural predictions revealed a close relationship with an YicI-like alpha-xylosidase of the GH31 family. However, the purified enzyme did not show alpha-xylosidase activity. This narrower substrate range indicates a discrepancy with annotations from different databases and the possibility of specific substrate adaptations of halophilic glucosidases due to high salinity. To our knowledge, this is the first report on the characterization of an alpha-glucosidase from the halophilic Archaea, which could serve as a new model to gain insights into carbon metabolism in this understudied microbial group.

摘要

我们报道了来自古菌的首个极端嗜盐α-葡萄糖苷酶(EC 3.2.1.20)的异源表达及分子特征。从C23注释基因组中PCR扩增出一段2349 bp的区域,将所得扩增子连接到质粒pET28b(+)中,在Rosetta细胞中表达,并用镍-氮三乙酸亲和层析法纯化所得蛋白质。重组蛋白的估计分子量为87 kDa,与注释蛋白的预期值一致,在40℃和pH 6.0时检测到对α-对硝基苯-α-D-吡喃葡萄糖苷(α-PNPG)水解的最佳活性。在3 M NaCl或3 - 4 M KCl存在下酶活性值最高。然而,与NaCl相比,在3 - 4 M KCl存在下比活性值高出两倍,表明其定位于细胞质。关于来自嗜盐菌属成员的其他α-葡萄糖苷酶的系统发育分析表明,MalH与嗜盐栖热袍菌(Thermotoga maritima)的α-葡萄糖苷酶和α-木糖苷酶最相似(高达41%)。此外,用于检测功能域、活性和催化位点的计算分析以及三维结构预测显示,它与GH31家族的一种YicI样α-木糖苷酶关系密切。然而,纯化的酶未显示α-木糖苷酶活性。这种较窄的底物范围表明与不同数据库的注释存在差异,以及由于高盐度嗜盐葡萄糖苷酶可能存在特定底物适应性。据我们所知,这是关于嗜盐古菌α-葡萄糖苷酶特征的首次报道,它可作为一个新模型,以深入了解这个研究较少的微生物群体中的碳代谢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a101/5745559/226f2f757bce/life-07-00046-g001.jpg

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