The Cellulosome System of Acetivibrio cellulolyticus Includes a Novel Type of Adaptor Protein and a Cell Surface Anchoring Protein
暂无分享,去创建一个
Raphael Lamed | Edward A. Bayer | Qi Xu | Shi-You Ding | E. Bayer | R. Lamed | Y. Shoham | S. Ding | Qi Xu | R. Kenig | Rina Kenig | Yuval Shoham | Wenchen Gao | W. Gao | Wenchen Gao
[1] P. Gounon,et al. OlpB, a new outer layer protein of Clostridium thermocellum, and binding of its S-layer-like domains to components of the cell envelope , 1995, Journal of bacteriology.
[2] D. Kelly,et al. The prokaryotes: an evolving electronic resource for the microbiological community - , 2002 .
[3] A. Khan. Cellulolytic Enzyme System of Acetivibrio cellulolyticus, a Newly Isolated Anaerobe , 1980 .
[4] A Bairoch,et al. Calcium-binding affinity and calcium-enhanced activity of Clostridium thermocellum endoglucanase D. , 1990, The Biochemical journal.
[5] B. Rost. PHD: predicting one-dimensional protein structure by profile-based neural networks. , 1996, Methods in enzymology.
[6] H. Fierobe,et al. Sequence Analysis of Scaffolding Protein CipC and ORFXp, a New Cohesin-Containing Protein inClostridium cellulolyticum: Comparison of Various Cohesin Domains and Subcellular Localization of ORFXp , 1999, Journal of bacteriology.
[7] Pedro M. Coutinho,et al. Carbohydrate-active enzymes : an integrated database approach , 1999 .
[8] S. Chauvaux,et al. Distinct Affinity of Binding Sites for S-Layer Homologous Domains in Clostridium thermocellum and Bacillus anthracis Cell Envelopes , 1999, Journal of bacteriology.
[9] O. Shoseyov,et al. Primary sequence analysis of Clostridium cellulovorans cellulose binding protein A. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[10] G. Patel,et al. The ultrastructure ofAcetivibrio cellulolyticus, a recently isolated cellulolytic anaerobe , 2005, Current Microbiology.
[11] M. James,et al. Refined crystal structure of troponin C from turkey skeletal muscle at 2.0 A resolution. , 1988, Journal of molecular biology.
[12] P. Gounon,et al. Identification of a region responsible for binding to the cell wall within the S-layer protein of Clostridium thermocellum. , 1998, Microbiology.
[13] Malmqvist,et al. Epitope Mapping by Label-Free Biomolecular Interaction Analysis , 1996, Methods.
[14] H Nielsen,et al. Machine learning approaches for the prediction of signal peptides and other protein sorting signals. , 1999, Protein engineering.
[15] M. Wilchek,et al. [14] Protein biotinylation , 1990 .
[16] W Baumeister,et al. Domain structure of the Acetogenium kivui surface layer revealed by electron crystallography and sequence analysis , 1994, Journal of bacteriology.
[17] B. Rost,et al. Prediction of protein secondary structure at better than 70% accuracy. , 1993, Journal of molecular biology.
[18] E. Bayer,et al. The cellulosome concept as an efficient microbial strategy for the degradation of insoluble polysaccharides. , 1999, Trends in microbiology.
[19] Birte Svensson,et al. Recent Advances in Carbohydrate Bioengineering , 1999 .
[20] R. Doi,et al. The Clostridium cellulovorans cellulosome: an enzyme complex with plant cell wall degrading activity. , 2001, Chemical record.
[21] J. Saddler,et al. Cellulase production by Acetivibrio cellulolyticus , 1980 .
[22] E. Bayer,et al. Cohesin‐dockerin recognition in cellulosome assembly: Experiment versus hypothesis , 2000, Proteins.
[23] W. Schwarz. The cellulosome and cellulose degradation by anaerobic bacteria , 2001, Applied Microbiology and Biotechnology.
[24] M. Mock,et al. The S‐layer homology domain as a means for anchoring heterologous proteins on the cell surface of Bacillus anthracis , 1999, Journal of applied microbiology.
[25] E. Bayer,et al. Designer nanosomes: Selective engineering of dockerin-containing enzymes into chimeric scaffoldins to form defined nanocreactors , 2002 .
[26] Raphael Lamed,et al. Major characteristics of the cellulolytic system of Clostridium thermocellum coincide with those of the purified cellulosome , 1985 .
[27] Raphael Lamed,et al. A Novel Cellulosomal Scaffoldin fromAcetivibrio cellulolyticus That Contains a Family 9 Glycosyl Hydrolase , 1999, Journal of bacteriology.
[28] A. Demain,et al. Sequencing of a Clostridium thermocellum gene (cipA) encoding the cellulosomal SL‐protein reveals an unusual degree of internal homology , 1993, Molecular microbiology.
[29] E Setter,et al. Characterization of a cellulose-binding, cellulase-containing complex in Clostridium thermocellum , 1983, Journal of bacteriology.
[30] Tetsuya Kimura,et al. Cloning and DNA Sequencing of the Genes EncodingClostridium josui Scaffolding Protein CipA and Cellulase CelD and Identification of Their Gene Products as Major Components of the Cellulosome , 1998, Journal of bacteriology.
[31] E. Bayer,et al. The cellulosome--a treasure-trove for biotechnology. , 1994, Trends in biotechnology.
[32] E. Bayer,et al. Cellulose, cellulases and cellulosomes. , 1998, Current opinion in structural biology.
[33] B Henrissat,et al. Glycoside hydrolases and glycosyltransferases: families and functional modules. , 2001, Current opinion in structural biology.
[34] C. Tardif,et al. The cellulolytic system of Clostridium cellulolyticum. , 1997, Journal of biotechnology.
[35] E. Bayer,et al. Adherence of Clostridium thermocellum to cellulose , 1983, Journal of bacteriology.
[36] Raphael Lamed,et al. Novel Organization and Divergent Dockerin Specificities in the Cellulosome System of Ruminococcus flavefaciens , 2003, Journal of bacteriology.
[37] Raphael Lamed,et al. Scanning electron microscopic delineation of bacterial surface topology using cationized ferritin , 1987 .
[38] E. Bayer,et al. Species‐specificity of the cohesin‐dockerin interaction between Clostridium thermocellum and Clostridium cellulolyticum: Prediction of specificity determinants of the dockerin domain , 1997, Proteins.
[39] E. Bayer,et al. The nature of the carbohydrate-peptide linkage region in glycoproteins from the cellulosomes of Clostridium thermocellum and Bacteroides cellulosolvens. , 1993, The Journal of biological chemistry.
[40] B. Rost,et al. Combining evolutionary information and neural networks to predict protein secondary structure , 1994, Proteins.
[41] P. Béguin,et al. The cellulosome: an exocellular, multiprotein complex specialized in cellulose degradation. , 1996, Critical reviews in biochemistry and molecular biology.
[42] E. Bayer,et al. Novel O-linked carbohydrate chains in the cellulase complex (cellulosome) of Clostridium thermocellum. 3-O-Methyl-N-acetylglucosamine as a constituent of a glycoprotein. , 1989, The Journal of biological chemistry.
[43] E. Bayer,et al. Cellulosome: a discrete cell surface organelle of Clostridium thermocellum which exhibits separate antigenic, cellulose-binding and various cellulolytic activities , 1983 .
[44] P Béguin,et al. A new type of cohesin domain that specifically binds the dockerin domain of the Clostridium thermocellum cellulosome-integrating protein CipA , 1996, Journal of bacteriology.
[45] M. Wilchek,et al. Protein biotinylation. , 1990, Methods in enzymology.
[46] H. Engelhardt,et al. Structural research on surface layers: a focus on stability, surface layer homology domains, and surface layer-cell wall interactions. , 1998, Journal of structural biology.
[47] Raphael Lamed,et al. The Cellulosome of Clostridium thermocellum , 1988 .
[48] Philippe Soucaille,et al. Characterization of the cellulolytic complex (cellulosome) of Clostridium acetobutylicum. , 2002, FEMS microbiology letters.
[49] L. Ljungdahl,et al. The cellulosome: the exocellular organelle of Clostridium. , 1993, Annual review of microbiology.
[50] E. Bayer,et al. Specialized cell surface structures in cellulolytic bacteria , 1987, Journal of bacteriology.
[51] J. Aubert,et al. Organization of a Clostridium thermocellum gene cluster encoding the cellulosomal scaffolding protein CipA and a protein possibly involved in attachment of the cellulosome to the cell surface , 1993, Journal of bacteriology.
[52] Rolf Apweiler,et al. The SWISS-PROT protein sequence database and its supplement TrEMBL in 2000 , 2000, Nucleic Acids Res..
[53] Rolf Apweiler,et al. The SWISS-PROT protein sequence data bank and its supplement TrEMBL , 1997, Nucleic Acids Res..
[54] E. Bayer,et al. Primary structure of O-linked carbohydrate chains in the cellulosome of different Clostridium thermocellum strains. , 1991, European journal of biochemistry.
[55] W. F. Thompson,et al. Rapid isolation of high molecular weight plant DNA. , 1980, Nucleic acids research.
[56] Raphael Lamed,et al. Cellulosomal Scaffoldin-Like Proteins fromRuminococcus flavefaciens , 2001, Journal of bacteriology.
[57] Raphael Lamed,et al. Cohesin-Dockerin Interaction in Cellulosome Assembly , 2001, The Journal of Biological Chemistry.
[58] W. M. Westler,et al. Secondary structure and calcium-induced folding of the Clostridium thermocellum dockerin domain determined by NMR spectroscopy. , 2000, Archives of biochemistry and biophysics.
[59] 大宮 邦雄,et al. Genetics, biochemistry and ecology of cellulose degradation , 1999 .
[60] L. Federici,et al. Carbohydrate Bioengineering Interdisciplinary approaches , 2002 .
[61] Raphael Lamed,et al. A Scaffoldin of the Bacteroides cellulosolvens Cellulosome That Contains 11 Type II Cohesins , 2000, Journal of bacteriology.
[62] E. Bayer,et al. Novel oligosaccharide constituents of the cellulase complex of Bacteroides cellulosolvens. , 1992, European journal of biochemistry.
[63] D. Israel. A PCR-based method for high stringency screening of DNA libraries. , 1993, Nucleic acids research.
[64] P. Gounon,et al. Characterization and Subcellular Localization of the Clostridium thermocellum Scaffoldin Dockerin Binding Protein SdbA , 1996 .
[65] G. Shoham,et al. Overproduction and characterization of seleno-methionine xylanase T-6. , 2000, Journal of biotechnology.