Nanoscale Engineering of Designer Cellulosomes

被引:44
作者
Gunnoo, Melissabye [1 ,2 ]
Cazade, Pierre-Andre [1 ,2 ]
Galera-Prat, Albert [3 ,4 ]
Nash, Michael A. [5 ,6 ]
Czjzek, Mirjam [7 ,8 ]
Cieplak, Marek [9 ]
Alvarez, Beatriz [10 ]
Aguilar, Marina [11 ]
Karpol, Alon [12 ]
Gaub, Hermann [5 ,6 ]
Carrion-Vazquez, Mariano [3 ,4 ]
Bayer, Edward A. [13 ]
Thompson, Damien [1 ,2 ]
机构
[1] Univ Limerick, Mat & Surface Sci Inst, Limerick, Ireland
[2] Univ Limerick, Dept Phys & Energy, Limerick, Ireland
[3] IMDEA Nanociencias, CSIC, Inst Cajal, Madrid, Spain
[4] CIBERNED, Madrid, Spain
[5] Univ Munich, Lehrstuhl Angew Phys, D-80799 Munich, Germany
[6] Univ Munich, Ctr Nanosci, D-80799 Munich, Germany
[7] Univ Paris 06, Sorbonne Univ, CS 90074, F-29688 Roscoff, Bretagne, France
[8] CNRS, UMR 8227, Integrat Biol Marine Models, Stn Biol, CS 90074, F-29688 Roscoff, Bretagne, France
[9] Polish Acad Sci, Inst Phys, Phys Biol Lab, Warsaw, Poland
[10] Biopolis SL, Parc Cient Univ Valencia,Edificio 2, Paterna 46980, Valencia, Spain
[11] Abengoa SA, Palmas Altas, Calle Energia Solar 1, Seville 41014, Spain
[12] Designer Energy Ltd, 2 Bergman St,Tamar Sci Pk, IL-7670504 Rehovot, Israel
[13] Weizmann Inst Sci, Dept Biol Chem, IL-76100 Rehovot, Israel
基金
爱尔兰科学基金会; 以色列科学基金会;
关键词
materials modeling; molecular dynamics calculations; nanobiomaterials; protein re-engineering; renewable energy; CARBOHYDRATE-BINDING MODULE; CLOSTRIDIUM-THERMOCELLUM CELLULOSOME; SCAFFOLDING PROTEIN CIPA; CELLULOLYTIC COMPLEX CELLULOSOME; COHESIN-DOCKERIN COMPLEX; CELL-SURFACE ATTACHMENT; RETRACTED ARTICLE. SEE; COARSE-GRAINED MODEL; ATOM FORCE-FIELD; X-RAY-SCATTERING;
D O I
10.1002/adma.201503948
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Biocatalysts showcase the upper limit obtainable for high-speed molecular processing and transformation. Efforts to engineer functionality in synthetic nanostructured materials are guided by the increasing knowledge of evolving architectures, which enable controlled molecular motion and precise molecular recognition. The cellulosome is a biological nanomachine, which, as a fundamental component of the plant-digestion machinery from bacterial cells, has a key potential role in the successful development of environmentally-friendly processes to produce biofuels and fine chemicals from the breakdown of biomass waste. Here, the progress toward so-called designer cellulosomes, which provide an elegant alternative to enzyme cocktails for lignocellulose breakdown, is reviewed. Particular attention is paid to rational design via computational modeling coupled with nanoscale characterization and engineering tools. Remaining challenges and potential routes to industrial application are put forward.
引用
收藏
页码:5619 / 5647
页数:29
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