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Biosynthesis of vitamin B12 in anaerobic bacteria : experiments with Eubacterium limosum on the incorporation of D-[1-13C]erythrose and [13C]formate into the 5,6-dimethylbenzimidazole moietyMUNDER, M; VOGT, J. R. A; VOGLER, B et al.European journal of biochemistry (Print). 1992, Vol 204, Num 2, pp 679-683, issn 0014-2956Article

Structure of the pilus assembly protein TadZ from Eubacterium rectale: implications for polar localizationQINGPING XU; CHRISTEN, Beat; LESLEY, Scott A et al.Molecular microbiology (Print). 2012, Vol 83, Num 4, pp 712-727, issn 0950-382X, 16 p.Article

Phenylacetic and phenylpropionic acids do not affect Xylan degradation by Ruminococcus albusREVENEAU, Carine; ADAMS, Sarah E; COTTA, M. A et al.Applied and environmental microbiology (Print). 2003, Vol 69, Num 11, pp 6954-6958, issn 0099-2240, 5 p.Article

Functional Analyses of Multiple Lichenin-Degrading Enzymes from the Rumen Bacterium Ruminococcus albus 8IAKIVIAK, Michael; MACKIE, Roderick I; CANN, Isaac K. O et al.Applied and environmental microbiology (Print). 2011, Vol 77, Num 21, pp 7541-7550, issn 0099-2240, 10 p.Article

Peptostreptococcus stomatis sp. nov., isolated from the human oral cavityDOWNES, Julia; WADE, William G.International journal of systematic and evolutionary microbiology (Print). 2006, Vol 56, pp 751-754, issn 1466-5026, 4 p., 4Article

Biosynthesis of vitamin B-12 in anaerobic bacteria: experiments with Eubacterium limosum and D-erythrose 14C-labeled in different positionsVOGT, J. R. A; LAMM-KOLONKO, L; RENZ, P et al.European journal of biochemistry (Print). 1988, Vol 174, Num 4, pp 637-640, issn 0014-2956Article

Distribution of 10-formyltetrahydrofolate synthetase in EubacteriaWHITEHEAD, T. R; PARK, M; RABINOWITZ, J. C et al.Journal of bacteriology. 1988, Vol 170, Num 2, pp 995-997, issn 0021-9193Article

Carbon monoxide metabolism in cell suspensions of Peptostreptococcus productus strain MarburgMA, K; SIEMON, S; DIEKERT, G et al.FEMS microbiology letters. 1987, Vol 43, Num 3, pp 367-371, issn 0378-1097Article

Ruminococcus albus 8 mutants defective in cellulose degradation are deficient in two processive endocellulases, Cel48A and Cel9B, both of which possess a novel modular architectureDEVILLARD, Estelle; GOODHEART, Dara B; KARNATI, Sanjay K. R et al.Journal of bacteriology. 2004, Vol 186, Num 1, pp 136-145, issn 0021-9193, 10 p.Article

Characterization of Eubacterium coprostanoligenes sp. nov., a cholesterol-reducing anaerobeFREIER, T. A; BEITZ, D. C; LING LI et al.International journal of systematic bacteriology. 1994, Vol 44, Num 1, pp 137-142, issn 0020-7713Article

Etude des limitations et des régulations du métabolisme central de Eubacterium limosum = Limitation and regulation throught the central metabolic patyways of Eubacterium limosumLe Bloas, Pascale; Lindley, N. D.1992, 221 p.Thesis

Complete Genome Sequence of a Carbon Monoxide-Utilizing Acetogen, Eubacterium limosum KIST612ROH, Hanseong; KO, Hyeok-Jin; KIM, Daehee et al.Journal of bacteriology. 2011, Vol 193, Num 1, pp 307-308, issn 0021-9193, 2 p.Article

Cell Surface Enzyme Attachment Is Mediated by Family 37 Carbohydrate-Binding Modules, Unique to Ruminococcus albusEZER, Anat; MATALON, Erez; JINDOU, Sadanari et al.Journal of bacteriology. 2008, Vol 190, Num 24, pp 8220-8222, issn 0021-9193, 3 p.Article

Presence of several cellulose-binding proteins in culture supernatant and cell lysate of Eubacterium cellulosolvens 5TOYODA, Atsushi; YODA, Kazutoyo; NAKAMURA, Yutaka et al.Journal of General and Applied Microbiology. 2001, Vol 47, Num 6, pp 321-328, issn 0022-1260Article

Mechanism of cholesterol reduction to coprostanol by Eubacterium coprostanoligenes ATCC 51222DEWEI REN; LING LI; SCHWABACHTER, A. W et al.Steroids. 1996, Vol 61, Num 1, pp 33-40, issn 0039-128XArticle

Genetic relationships among Eubacterium speciesNAKAZAWA, F; HOSHINO, E.International journal of systematic bacteriology. 1994, Vol 44, Num 4, pp 787-790, issn 0020-7713Article

Immunological specificity of oral Eubacterium speciesNAKAZAWA, F; HOSHINO, E.JGM. Journal of general microbiology. 1993, Vol 139, pp 2635-2640, 11Article

Positive selection of antibiotic-producing soil isolatesHUCK, T. A; PORTER, N; BUSHELL, M. E et al.JGM. Journal of general microbiology. 1991, Vol 137, pp 2321-2329, 10Article

Intestinal Bacterium Eubacterium cellulosolvens Deglycosylates Flavonoid C- and O-GlucosidesBRAUNE, Annett; BLAUT, Michael.Applied and environmental microbiology (Print). 2012, Vol 78, Num 22, pp 8151-8153, issn 0099-2240, 3 p.Article

Complete Genome of the Cellulolytic Ruminal Bacterium Ruminococcus albus 7SUEN, Garret; STEVENSON, David M; HAUSER, Loren J et al.Journal of bacteriology. 2011, Vol 193, Num 19, pp 5574-5575, issn 0021-9193, 2 p.Article

Ce16B of Thermobifidus fusca and a Cel5-CBM6 of Ruminococcus albus containing a cellulose binding site show synergistic effect on hydrolysis of native plant celluloseBAE, Hyeun-Jong; TURCOTTE, Ginette; YOON SOO KIM et al.FEMS microbiology letters. 2004, Vol 233, Num 2, pp 325-331, issn 0378-1097, 7 p.Article

A possible role of cellulose-binding protein A (CBPA) in the adhesion of Eubacterium cellulosolvens 5 to celluloseTOYODA, Atsushi; TAKANO, Kazunori; MINATO, Hajime et al.Journal of General and Applied Microbiology. 2003, Vol 49, Num 4, pp 245-250, issn 0022-1260, 6 p.Article

Purification, characterization and cloning of an endo-1,4-β-glucanase from Ruminococcus spSUDEEP KUMAR SRIVASTAVA; ARIF ALI; SUNIL KHANNA et al.Biotechnology letters. 1991, Vol 13, Num 12, pp 907-912, issn 0141-5492Article

Eubacteria, halobacteria, and the origin of photosynthesis: the photocytesLAKE, J. A; CLARK, M. W; HENDERSON, E et al.Proceedings of the National Academy of Sciences of the United States of America. 1985, Vol 82, Num 11, pp 3716-3720, issn 0027-8424Article

A phylogenetic definition of the major eubacterial taxaWOESE, C. R; STACKEBRANDT, E; MACKE, T. J et al.Systematic and applied microbiology. 1985, Vol 6, Num 2, pp 143-151, issn 0723-2020Article

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