林产化学与工业
林產化學與工業
림산화학여공업
CHEMISTRY AND INDUSTRY OF FOREST PRODUCTS
2014年
3期
130-134
,共5页
高速原子力显微镜%纤维素酶%结晶纤维素
高速原子力顯微鏡%纖維素酶%結晶纖維素
고속원자력현미경%섬유소매%결정섬유소
high speed atomic force microscopy%cellullase%crystalline cellulose
介绍了原子力显微镜( AFM)和高速原子力显微镜( HP-AFM)在研究生物大分子动态过程中的优势和Trichoderma reesei纤维素降解酶系的情况。详细综述了高速原子力显微镜和高分辨率原子力显微镜( HR-AFM)应用于研究 Trichoderma reesei 产生的3种主要纤维素酶 Cel7A (TrCel7A),Cel6A(TrCel6A)和Cel7B(TrCel7B)在结晶纤维素上行为所获得的结果。可知,结晶纤维素载入催化结构域和糖苷键的水解是Cel7A运动所必须的;增加结晶纤维素的疏水面积、Cel6A和Cel7A的协同作用能提高结晶纤维素水解速率;Cel7B在起初引起结晶纤维素表面的水解之后引起润涨。可以预期HP-AFM将在阐明纤维素酶在结晶纤维素上的作用机制方面发挥巨大作用。
介紹瞭原子力顯微鏡( AFM)和高速原子力顯微鏡( HP-AFM)在研究生物大分子動態過程中的優勢和Trichoderma reesei纖維素降解酶繫的情況。詳細綜述瞭高速原子力顯微鏡和高分辨率原子力顯微鏡( HR-AFM)應用于研究 Trichoderma reesei 產生的3種主要纖維素酶 Cel7A (TrCel7A),Cel6A(TrCel6A)和Cel7B(TrCel7B)在結晶纖維素上行為所穫得的結果。可知,結晶纖維素載入催化結構域和糖苷鍵的水解是Cel7A運動所必鬚的;增加結晶纖維素的疏水麵積、Cel6A和Cel7A的協同作用能提高結晶纖維素水解速率;Cel7B在起初引起結晶纖維素錶麵的水解之後引起潤漲。可以預期HP-AFM將在闡明纖維素酶在結晶纖維素上的作用機製方麵髮揮巨大作用。
개소료원자력현미경( AFM)화고속원자력현미경( HP-AFM)재연구생물대분자동태과정중적우세화Trichoderma reesei섬유소강해매계적정황。상세종술료고속원자력현미경화고분변솔원자력현미경( HR-AFM)응용우연구 Trichoderma reesei 산생적3충주요섬유소매 Cel7A (TrCel7A),Cel6A(TrCel6A)화Cel7B(TrCel7B)재결정섬유소상행위소획득적결과。가지,결정섬유소재입최화결구역화당감건적수해시Cel7A운동소필수적;증가결정섬유소적소수면적、Cel6A화Cel7A적협동작용능제고결정섬유소수해속솔;Cel7B재기초인기결정섬유소표면적수해지후인기윤창。가이예기HP-AFM장재천명섬유소매재결정섬유소상적작용궤제방면발휘거대작용。
The advantages of the atomic force microscopy and high speed atomic force microscopy on studying the dynamics of bio-macromolecule and the cellulytic enzyme system of Trichoderma reesei were presented. The results of high speed atomic force microscopy and high resolution atomic force microscopy in investigating the actions of Cel7A(TrCel7A), Cel6A(TrCel6A) and Cel7B(TrCel7B) of Trichoderma reesei on crystalline cellulose were reviewed in detail. The conclusion reveals that the loading of crystalline cellulose into catalytic domain and the hydrolysis of the glucosidic bond are prerequisite for the movement of Cel7A;increasing the hydrophobic area of crystalline cellulose and the combination of Cel6A and Cel7A enhance the hydrolytic rate of crystalline cellulose;Cel7B makes crystalline cellulose swelling. And it is prospective that HP-AFM will play an important role in elucidating the acting mechanism of cellulase on crystalline cellulose.