Furtado Gilvan P, Santos Camila R, Cordeiro Rosa L, Ribeiro Lucas F, de Moraes Luiz A B, Damásio André R L, Polizeli Maria de Lourdes T M, Lourenzoni Marcos R, Murakami Mário T, Ward Richard J
Departamento de Bioquímica e Imunologia, FMRP-USP, Universidade de São Paulo, Ribeirão Preto, SP, Brazil.
Appl Microbiol Biotechnol. 2015 Jun;99(12):5095-107. doi: 10.1007/s00253-014-6324-0. Epub 2015 Jan 22.
Xyloglucan-specific endo-β-1,4-glucanases (Xegs, EC 3.2.1.151) exhibit high catalytic specificity for β-1,4 linkages of xyloglucan, a branched hemicellulosic polysaccharide abundant in dicot primary cell walls and present in many monocot species. In nature, GH12 Xegs are not associated with carbohydrate-binding modules (CBMs), and here, we have investigated the effect of the fusion of the xyloglucan-specific CBM44 on the structure and function of a GH12 Xeg from Aspergillus niveus (XegA). This fusion presented enhanced catalytic properties and conferred superior thermal stability on the XegA. An increased k cat (chimera, 177.03 s(-1); XegA, 144.31 s(-1)) and reduced KM (chimera, 1.30 mg mL(-1); XegA, 1.50 mg mL(-1)) resulted in a 1.3-fold increase in catalytic efficiency of the chimera over the parental XegA. Although both parental and chimeric enzymes presented catalytic optima at pH 5.5 and 60 °C, the thermostabilitiy of the chimera at 60 °C was greater than the parental XegA. Moreover, the crystallographic structure of XegA together with small-angle X-ray scattering (SAXS) and molecular dynamics simulations revealed that the spatial arrangement of the domains in the chimeric enzyme resulted in the formation of an extended binding cleft that may explain the improved kinetic properties of the CBM44-XegA chimera.
木葡聚糖特异性内切-β-1,4-葡聚糖酶(Xegs,EC 3.2.1.151)对木葡聚糖的β-1,4连接具有高度催化特异性,木葡聚糖是一种分支的半纤维素多糖,在双子叶植物的初生细胞壁中含量丰富,也存在于许多单子叶植物物种中。在自然界中,GH12 Xegs不与碳水化合物结合模块(CBMs)相关联,在此,我们研究了木葡聚糖特异性CBM44的融合对来自构巢曲霉的GH12 Xeg(XegA)的结构和功能的影响。这种融合表现出增强的催化特性,并赋予XegA更高的热稳定性。k cat增加(嵌合体为177.03 s-1;XegA为144.31 s-1)和KM降低(嵌合体为1.30 mg mL-1;XegA为1.50 mg mL-1)导致嵌合体的催化效率比亲本XegA提高了1.3倍。尽管亲本酶和嵌合酶在pH 5.5和60°C时都呈现出催化最适值,但嵌合体在60°C时的热稳定性高于亲本XegA。此外,XegA的晶体结构以及小角X射线散射(SAXS)和分子动力学模拟表明,嵌合酶中结构域的空间排列导致形成了一个扩展的结合裂隙,这可能解释了CBM44-XegA嵌合体改善的动力学特性。