The binding of cellulase variants to dislocations: a semi-quantitative analysis based on CLSM (confocal laser scanning microscopy) images

被引:0
作者
Budi J. Hidayat
Carmen Weisskopf
Claus Felby
Katja S. Johansen
Lisbeth G. Thygesen
机构
[1] UniBio a/s,Department of Biomaterials
[2] Max Planck Institute of Colloids and Interfaces,Department of Geosciences and Natural Resource Management
[3] University of Copenhagen,Division of Industrial Biotechnology
[4] Chalmers University of Technology,undefined
来源
AMB Express | / 5卷
关键词
Cellulase binding; Fluorescence-labelled enzymes; Dislocations; Confocal laser scanning microscopy; Ratio imaging; Semi-quantitative analysis;
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摘要
Binding of enzymes to the substrate is the first step in enzymatic hydrolysis of lignocellulose, a key process within biorefining. During this process elongated plant cells such as fibers and tracheids have been found to break into segments at irregular cell wall regions known as dislocations or slip planes. Here we study whether cellulases bind to dislocations to a higher extent than to the surrounding cell wall. The binding of fluorescently labelled cellobiohydrolases and endoglucanases to filter paper fibers was investigated using confocal laser scanning microscopy and a ratiometric method was developed to assess and quantify the abundance of the binding of cellulases to dislocations as compared to the surrounding cell wall. Only Humicola insolens EGV was found to have stronger binding preference to dislocations than to the surrounding cell wall, while no difference in binding affinity was seen for any of the other cellulose variants included in the study (H. insolens EGV variants, Trichoderma reesei CBHI, CBHII and EGII). This result favours the hypothesis that fibers break at dislocations during the initial phase of hydrolysis mostly due to mechanical failure rather than as a result of faster degradation at these locations.
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