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嗜碱芽孢杆菌NG-27天然型及木糖结合型碱性耐热木聚糖酶的晶体结构:嗜碱性的结构见解及对适应多重极端条件的启示

Crystal structures of native and xylosaccharide-bound alkali thermostable xylanase from an alkalophilic Bacillus sp. NG-27: structural insights into alkalophilicity and implications for adaptation to polyextreme conditions.

作者信息

Manikandan Karuppasamy, Bhardwaj Amit, Gupta Naveen, Lokanath Neratur K, Ghosh Amit, Reddy Vanga Siva, Ramakumar Suryanarayanarao

机构信息

Department of Physics, Indian Institute of Science, Bangalore.

出版信息

Protein Sci. 2006 Aug;15(8):1951-60. doi: 10.1110/ps.062220206. Epub 2006 Jul 5.

Abstract

Crystal structures are known for several glycosyl hydrolase family 10 (GH10) xylanases. However, none of them is from an alkalophilic organism that can grow in alkaline conditions. We have determined the crystal structures at 2.2 Angstroms of a GH10 extracellular endoxylanase (BSX) from an alkalophilic Bacillus sp. NG-27, for the native and the complex enzyme with xylosaccharides. The industrially important enzyme is optimally active and stable at 343 K and at a pH of 8.4. Comparison of the structure of BSX with those of other thermostable GH10 xylanases optimally active at acidic or close to neutral pH showed that the solvent-exposed acidic amino acids, Asp and Glu, are markedly enhanced in BSX, while solvent-exposed Asn was noticeably depleted. The BSX crystal structure when compared with putative three-dimensional homology models of other extracellular alkalophilic GH10 xylanases from alkalophilic organisms suggests that a protein surface rich in acidic residues may be an important feature common to these alkali thermostable enzymes. A comparison of the surface features of BSX and of halophilic proteins allowed us to predict the activity of BSX at high salt concentrations, which we verified through experiments. This offered us important lessons in the polyextremophilicity of proteins, where understanding the structural features of a protein stable in one set of extreme conditions provided clues about the activity of the protein in other extreme conditions. The work brings to the fore the role of the nature and composition of solvent-exposed residues in the adaptation of enzymes to polyextreme conditions, as in BSX.

摘要

几种糖基水解酶家族10(GH10)木聚糖酶的晶体结构已为人所知。然而,它们都不是来自能在碱性条件下生长的嗜碱生物。我们已经确定了来自嗜碱芽孢杆菌属NG-27的一种GH10细胞外内切木聚糖酶(BSX)的天然结构以及与木糖寡糖形成的复合酶结构,分辨率为2.2埃。这种在工业上重要的酶在343 K和pH 8.4时具有最佳活性和稳定性。将BSX的结构与其他在酸性或接近中性pH下具有最佳活性的耐热GH10木聚糖酶的结构进行比较,结果表明,在BSX中,溶剂暴露的酸性氨基酸天冬氨酸(Asp)和谷氨酸(Glu)显著增加,而溶剂暴露的天冬酰胺(Asn)明显减少。将BSX的晶体结构与来自嗜碱生物的其他细胞外嗜碱GH10木聚糖酶的三维同源性推测模型进行比较,结果表明富含酸性残基的蛋白质表面可能是这些碱耐热酶共有的一个重要特征。对BSX和嗜盐蛋白质表面特征的比较使我们能够预测BSX在高盐浓度下的活性,我们通过实验验证了这一点。这为我们提供了关于蛋白质多极端嗜性的重要经验,即在一组极端条件下稳定的蛋白质的结构特征为了解该蛋白质在其他极端条件下的活性提供了线索。这项工作凸显了溶剂暴露残基的性质和组成在酶适应多极端条件(如在BSX中)方面的作用。

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