首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >BINDING CAPACITIES FOR THERMOMONOSPORA FUSCA E-3, E-4 AND E-5, THE E-3 BINDING DOMAIN, AND TRICHODERMA REESEI CBHI ON AVICEL AND BACTERIAL MICROCRYSTALLINE CELLULOSE
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BINDING CAPACITIES FOR THERMOMONOSPORA FUSCA E-3, E-4 AND E-5, THE E-3 BINDING DOMAIN, AND TRICHODERMA REESEI CBHI ON AVICEL AND BACTERIAL MICROCRYSTALLINE CELLULOSE

机译:卵泡和细菌微晶纤维素对热食毛囊菌E-3,E-4和E-5,E-3结合域和里氏木霉的结合能力

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Equilibrium binding of Thermomonospora fusca E-3, E-4 and E-5, the E-3 binding domain (CBDE3), and Trichoderma reesei CBHI on Avicel PH102 and bacterial microcrystalline cellulose (BMCC) was studied. The maximum adsorption levels, E-b,E-m, for all four cellulases and the binding domain were 9-30 times higher on BMCC than on Avicel. The association constants for the individual cellulases were dependent upon the substrate; however no obvious patterns were noted. A comparison of the T. fusca EbmS showed a decreasing power function relationship between molecular weight and maximum adsorption levels. This was particularly true for the cellulases binding on Avicel. The T. fusca binding results strongly suggest that binding capacity is a function of the cellulase size and the pore structure of the cellulose. (C) 1997 Elsevier Science Ltd. [References: 55]
机译:研究了热单孢菌E-3,E-4和E-5,E-3结合域(CBDE3)和里氏木霉CBHI在Avicel PH102和细菌微晶纤维素(BMCC)上的平衡结合。所有四种纤维素酶和结合域的最大吸附水平E-b,E-m在BMCC上均比在Avicel上高9-30倍。各个纤维素酶的缔合常数取决于底物。但是没有发现明显的模式。 T.fusca EbmS的比较显示分子量和最大吸附水平之间的幂函数关系减小。对于结合在Avicel上的纤维素酶而言尤其如此。 T.fusca的结合结果强烈表明结合能力是纤维素酶大小和纤维素孔结构的函数。 (C)1997 Elsevier Science Ltd. [参考:55]

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