CELLULOSOME

作品数:3被引量:5H指数:2
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相关领域:生物学更多>>
相关期刊:《Green Carbon》《Bulletin of the Chinese Academy of Sciences》《Synthetic and Systems Biotechnology》更多>>
相关基金:国家自然科学基金国家重点基础研究发展计划更多>>
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Designing chimeric enzymes inspired by fungal cellulosomes被引量:2
《Synthetic and Systems Biotechnology》2020年第1期23-32,共10页Sean P.Gilmore Stephen P.Lillington Charles H.Haitjema Randall de Groot Michelle A.O'Malley 
The authors are grateful to funding sources from the Office of Science(BER),U.S.Department of Energy(DE-SC0010352);the National Science Foundation(MCB-1553721);the Institute for Collaborative Biotechnologies through grants W911NF-09-0001 and W911NF-19-D-0001 from the U.S.Army Research Office;and the Camille Dreyfus Teacher-Scholar Awards Program.All authors acknowledge support from the California NanoSystems Institute(CNSI)Challenge Grant Program,supported by the University of California,Santa Barbara and the University of California,Office of the President.SPG also acknowledges support from the National Science Foundation Graduate Research Fellowship Program under Grant DGE 1144085.We thank Prof.Robert Kelly for providing us with T.maritima DNA.The authors acknowledge the use of the Biological Nanostructures Laboratory within the California NanoSystems Institute,supported by the University of California,Santa Barbara and the University of California,Office of the President.
Cellulosomes are synthesized by anaerobic bacteria and fungi to degrade lignocellulose via synergistic action of multiple enzymes fused to a protein scaffold.Through templating key protein domains(cohesin and dockerin...
关键词:CELLULOSOME DOCKERIN SCAFFOLDIN Anaerobic fungi THERMOPHILE ENZYME 
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