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Journal Abstract Search


264 related items for PubMed ID: 29274637

  • 1. Large-scale production of a thermostable Rhodothermus marinus cellulase by heterologous secretion from Streptomyces lividans.
    Hamed MB, Karamanou S, Ólafsdottir S, Basílio JSM, Simoens K, Tsolis KC, Van Mellaert L, Guðmundsdóttir EE, Hreggvidsson GO, Anné J, Bernaerts K, Fridjonsson OH, Economou A.
    Microb Cell Fact; 2017 Dec 23; 16(1):232. PubMed ID: 29274637
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  • 2. Functional large-scale production of a novel Jonesia sp. xyloglucanase by heterologous secretion from Streptomyces lividans.
    Sianidis G, Pozidis C, Becker F, Vrancken K, Sjoeholm C, Karamanou S, Takamiya-Wik M, van Mellaert L, Schaefer T, Anné J, Economou A.
    J Biotechnol; 2006 Feb 24; 121(4):498-507. PubMed ID: 16168511
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  • 4. Over-production of various secretory-form proteins in Streptomyces lividans.
    Noda S, Ito Y, Shimizu N, Tanaka T, Ogino C, Kondo A.
    Protein Expr Purif; 2010 Oct 24; 73(2):198-202. PubMed ID: 20546899
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  • 5. Cloning, sequencing and overexpression of a Rhodothermus marinus gene encoding a thermostable cellulase of glycosyl hydrolase family 12.
    Halldórsdóttir S, Thórólfsdóttir ET, Spilliaert R, Johansson M, Thorbjarnardóttir SH, Palsdottir A, Hreggvidsson GO, Kristjánsson JK, Holst O, Eggertsson G.
    Appl Microbiol Biotechnol; 1998 Mar 24; 49(3):277-84. PubMed ID: 9581291
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  • 6. Protein secretion biotechnology using Streptomyces lividans: large-scale production of functional trimeric tumor necrosis factor alpha.
    Pozidis C, Lammertyn E, Politou AS, Anné J, Tsiftsoglou AS, Sianidis G, Economou A.
    Biotechnol Bioeng; 2001 Mar 20; 72(6):611-9. PubMed ID: 11460252
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  • 7. Hyper secretion of Thermobifida fusca β-glucosidase via a Tat-dependent signal peptide using Streptomyces lividans.
    Miyazaki T, Noda S, Tanaka T, Kondo A.
    Microb Cell Fact; 2013 Oct 01; 12():88. PubMed ID: 24083334
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  • 10. Cloning, characterization and phylogenetic relationships of cel5B, a new endoglucanase encoding gene from Thermobifida fusca.
    Posta K, Béki E, Wilson DB, Kukolya J, Hornok L.
    J Basic Microbiol; 2004 Oct 01; 44(5):383-99. PubMed ID: 15378527
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  • 11. Recombinant production of Streptococcus equisimilis streptokinase by Streptomyces lividans.
    Pimienta E, Ayala JC, Rodríguez C, Ramos A, Van Mellaert L, Vallín C, Anné J.
    Microb Cell Fact; 2007 Jul 05; 6():20. PubMed ID: 17610745
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  • 13. Heterologous production of streptokinase as a secretory form in Streptomyces lividans and nonsecretory form in Escherichia coli.
    Kim MR, Choeng YH, Chi WJ, Kang DK, Hong SK.
    J Microbiol Biotechnol; 2010 Jan 05; 20(1):132-7. PubMed ID: 20134244
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  • 14. Comparison of the Sec and Tat secretion pathways for heterologous protein production by Streptomyces lividans.
    Schaerlaekens K, Lammertyn E, Geukens N, De Keersmaeker S, Anné J, Van Mellaert L.
    J Biotechnol; 2004 Sep 09; 112(3):279-88. PubMed ID: 15313005
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  • 15. A highly acid-stable and thermostable endo-beta-glucanase from the thermoacidophilic archaeon Sulfolobus solfataricus.
    Huang Y, Krauss G, Cottaz S, Driguez H, Lipps G.
    Biochem J; 2005 Jan 15; 385(Pt 2):581-8. PubMed ID: 15456402
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  • 16. Extracellular production of Streptomyces lividans acetyl xylan esterase A in Escherichia coli for rapid detection of activity.
    Nisole A, Lussier FX, Morley KL, Shareck F, Kazlauskas RJ, Dupont C, Pelletier JN.
    Protein Expr Purif; 2006 Apr 15; 46(2):274-84. PubMed ID: 16256365
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  • 17. Complete genome sequence of Streptomyces lividans TK24.
    Rückert C, Albersmeier A, Busche T, Jaenicke S, Winkler A, Friðjónsson ÓH, Hreggviðsson GÓ, Lambert C, Badcock D, Bernaerts K, Anne J, Economou A, Kalinowski J.
    J Biotechnol; 2015 Apr 10; 199():21-2. PubMed ID: 25680930
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  • 19. Streptomyces as Overexpression System for Heterologous Production of an Antimicrobial Peptide.
    Roldán-Tapia M, Anné J, Reyes AG, Carrasco U, Millán-Pacheco C, Barrios-González J, Mejía A.
    Protein Pept Lett; 2017 Apr 10; 24(6):483-488. PubMed ID: 28183247
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