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首页 > 学术期刊 > 酶的应用与发展论文参考文献

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1 邱雁临.纤维素酶的研究和应用前景[J].粮食与饲料科技,2001,30~31 2 刘耘,鄢满秀.纤维素酒精发酵的研究进展[J].广州食品工业发酵,1999,15(2):51~54,63 3 戴四发,金光明,王立克,等.纤维素酶研究现状及其在畜牧业中的应用[J].安徽技术师范学院学报,2001,45(3):32~38 4 阎伯旭,齐飞,张颖舒,等.纤维素酶分子结构和功能研究进展[J].生物化学与生物物理进展,1999,26(3):233~237 5 张鸿雁,陈锡时.微生物纤维素酶分子生物学研究进展[J].生物技术,2003,13(3):41~42 6 杨礼富,微生物学通报,2003, 30 (4):9 987 史雅娟,吕永龙,环境科学进展1999, 7 ( 6)3} 378 宋桂经,纤维素科学与技术,广西人学学报:自然科学版).2004. 29(1):73- 769 曲杳波,高培基.开展生物质转化为洒精研究实现液态燃料可持续供应}c}.发酵工程学科的进展一第一次全国发酵工程学术讨论会.北京:中国轻工业出版社,2002, 34一39.

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眼角落下的泪

[1] Thoroson J S, Hoster T J, Jiang J, et al. Nature′s carbohydrate chemists: the enzymatic glycosylation of bioactive bacterial metabolites [J]. Curr Org Chem,2001,5(2):139[2] Weymouth?Wilson A C. The role of carbohydrates in biologically active natural products [J]. Nat Prod Rep,1997,14(2):99[3] Losey H C, Peczuh M W, Chen Z, et al. Tandem action of glycosyltransferases in the maturation of vancomycin and teicoplanin aglycones: novel glycopeptides [J]. Biochemistry,2001,40(15):4745[4] Cudic P, Kranz J K, Behenna D C, et al. Complexation of peptidoglycan intermediates by the lipoglycodepsipeptide antibiotic ramoplanin: minimal structural requirements for intermolecular complexation and fibril formation [J]. Proc Natl Acad Sci,2002,99(11):7384[5] Gellert M, O′Dea M H, Itoh T, et al. Novobiocin and coumermycin inhibit DNA supercoiling catalyzed by DNA gyrase [J]. Proc Natl Acad Sci,1976,73(12):4474[6] Sosio M, Stinchi S, Beltrametti F, et al. The gene cluster for the biosynthesis of the glycopeptide antibiotic A40926 by nonomuraea species [J]. Chem Biol,2003,10(6):541[7] Quiros L M, Aguirrezabalaga I, Olano C, et al. Two glycosyltransferases and a glycosidase are involved in oleandomycin modification during its biosynthesis by Streptomyces antibioticus [J]. Mol Microbiol,1998,28(6):1177[8] Gourmelen A, Blondelet?Rouault M H, Pernodet J L. Characterization of a glycosyl transferase inactivating macrolides, encoded by gimA from Streptomyces ambofaciens [J]. Antimicrob Agents Chemother,1998,42(10):2612[9] 代焕琴. 安丝菌素生物合成的后修饰研究[D]. 中国科学院博士学位论文,2006:40[10] Walsh C T, Losey H C, Freel C L. Antibiotic glycosyltransferases [J]. Biochem Soc Trans,2003,31(Pt3):487[11] Lu C, Bai L, Shen Y. A novel amide N?glycoside of ansamitocins from Actinosynnema pretiosum [J]. J Antibiot,2004,57(5):348[12] Hoffmeister D, Ichinose K, Bechthold A. Two sequence elements of glycosyltransferases involved in urdamycin biosynthesis are responsible for substrate specificity and enzymatic activity [J]. Chem Biol,2001,8(16):557[13] Mulichak A M, Losey H C, Walsh C T, et al. Structure of the UDP?glucosyltransferase GtfB that modifies the heptapeptide aglycone in the biosynthesis of vancomycin group antibiotics [J]. Structure,2001,9(7):547[14] Sanchez C, ButovichI A, Brana A F, et al. The biosynthetic gene cluster for the antitumor rebeccamycin: characterization and generation of indolocarbazole derivatives [J]. Chem Biol,2002,9(4):519[15] Otten S L, Liu X, Ferguson J, et al. Cloning and characterization of the Streptomyces peucetius dnrQS genes encoding a daunosamine biosynthesis enzyme and a glycosyltransferase involved in daunorubicin biosynthesis [J]. J Bacteriol,1995,177(22):6688[16] Zhao Y, Ahlert J, Xue Y, et al. Engineering a methy?mycin/pikromycin?calicheamicin hybrid: construction of two new macrolides carrying a designed sugar moiety [J]. J Am Chem Soc,1999,121(42):9881[17] Hoffmeister D, Ichinose K, Domann S, et al. The NDP?sugar co?substrate concentration and the enzyme expression level influence the substrate specificity of glycosyltransferases: cloning and characterization of deoxysugar biosynthetic genes of the urdamycin biosynthetic gene cluster [J]. Chem Biol,2000,7(11):821[18] Walsh C, Freel C L, Losey H C. Antibiotic glycosyltransferases: antibiotic maturation and prospects for reprogramming [J]. J Med Chem,2003,46(16):3425[19] Blanco G, Patallo E P, Brana A F, et al. Identification of a sugar flexible glycosyltransferase from Streptomyces olivaceus: the producer of the antitumor polyketide elloramycin [J]. Chem Biol,2001,8(3):253[20] Dürr C, Hoffmeister D, Wohlert S E, et al. The glycosyltransferase UrdGT2 establishes both C? and O?glycosidic bonds [J]. Angewandte,2004,43(22):2962[21] Freel C L, Anderson J W, Kahne D, et al. Initial characterization of novobiocic acid noviosyl transferase activity of NovM in biosynthesis of the antibiotic novobiocin [J]. Biochemistry,2002,42(14):4179[22] Mendez C, Salas J A. Altering the glycosylation pattern of bioactive compounds [J]. Trends Biotechnol,2001,19(11):449[23] He X, M Liu, H W. Formation of unusual sugars: mechanistic studies and biosynthetic applications [J]. Annu Rev Biochem,2002,71:701[24] Oberthur M, Leimkuhler C, Kruger R G, et al. A systematic investigation of the synthetic utility of glycopeptide glycosyltransferases [J]. J Am Chem Soc,2005,127(30):10747[25] Wohlert S E, Blanco G, Lombo F, et al. Novel hybrid tetracenomycins through combinatorial biosynthesis using a glycosyltransferase encoded by elm genes in cosmid 16F4 and which shows a broad sugar substrate specificity [J]. J Am Chem Soc,1998,120(41):10596[26] Salas J A, Mendez C. Biosynthesis pathways for deoxysugars in antibiotic?producing actinomycetes: isolation, characterization and generation of novel glycosylated derivatives [J]. J Mol Microbiol Biotechnol,2005,9(2):77[27] Sanchez C, Zhu L, Brana A F, et al. Combinatorial biosynthesis of antitumor indolocarbazole compounds [J]. Proc Natl Acad Sci,2005,102(2):461[28] Salas A P, Zhu L, Sanchez C, et al. Deciphering the late steps in the biosynthesis of the anti?tumour indolocarbazole staurosporine: sugar donor substrate flexibility of the StaG glycosyltransferase [J]. Mol Microbiol,2005,58(1):17[29] Doumith M, Legrand R, Lang C, et al. Interspecies complementation in Saccharopolyspora erythraea: elucidation of the function of oleP1, oleG1 and oleG2 from the oleandomycin biosynthetic gene cluster of Streptomyces antibioticus and generation of new ery

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