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Journal Abstract Search


229 related items for PubMed ID: 8208240

  • 21. Key regulatory elements of a strong constitutive promoter, P GCW14, from Pichia pastoris.
    Zhang X, Zhang X, Liang S, Ye Y, Lin Y.
    Biotechnol Lett; 2013 Dec; 35(12):2113-9. PubMed ID: 23974495
    [Abstract] [Full Text] [Related]

  • 22. Identification of major ADH genes in ethanol metabolism of Pichia pastoris.
    Karaoğlan M, Erden-Karaoğlan F, Yılmaz S, İnan M.
    Yeast; 2020 Feb; 37(2):227-236. PubMed ID: 31603243
    [Abstract] [Full Text] [Related]

  • 23. Transcription factor Mxr1 promotes the expression of Aox1 by repressing glycerol transporter 1 in Pichia pastoris.
    Zhan C, Yang Y, Zhang Z, Li X, Liu X, Bai Z.
    FEMS Yeast Res; 2017 Jun 01; 17(4):. PubMed ID: 28334164
    [Abstract] [Full Text] [Related]

  • 24. Characterization and application of a putative transcription factor (SUT2) in Pichia pastoris.
    Yang Y, Zheng Y, Wang P, Li X, Zhan C, Linhardt RJ, Zhang F, Liu X, Zhan J, Bai Z.
    Mol Genet Genomics; 2020 Sep 01; 295(5):1295-1304. PubMed ID: 32566991
    [Abstract] [Full Text] [Related]

  • 25. Expression of Cloned Genes in Pichia pastoris Using the Methanol-Inducible Promoter AOX1.
    Kielkopf CL, Bauer W, Urbatsch IL.
    Cold Spring Harb Protoc; 2021 Jan 04; 2021(1):. PubMed ID: 33397779
    [Abstract] [Full Text] [Related]

  • 26. Invertase secretion in Hansenula polymorpha under the AOX1 promoter from Pichia pastoris.
    Rodriguez L, Narciandi RE, Roca H, Cremata J, Montesinos R, Rodriguez E, Grillo JM, Muzio V, Herrera LS, Delgado JM.
    Yeast; 1996 Jul 04; 12(9):815-22. PubMed ID: 8840498
    [Abstract] [Full Text] [Related]

  • 27. PpNrg1 is a transcriptional repressor for glucose and glycerol repression of AOX1 promoter in methylotrophic yeast Pichia pastoris.
    Wang X, Cai M, Shi L, Wang Q, Zhu J, Wang J, Zhou M, Zhou X, Zhang Y.
    Biotechnol Lett; 2016 Feb 04; 38(2):291-8. PubMed ID: 26463371
    [Abstract] [Full Text] [Related]

  • 28. Mxr1p, a key regulator of the methanol utilization pathway and peroxisomal genes in Pichia pastoris.
    Lin-Cereghino GP, Godfrey L, de la Cruz BJ, Johnson S, Khuongsathiene S, Tolstorukov I, Yan M, Lin-Cereghino J, Veenhuis M, Subramani S, Cregg JM.
    Mol Cell Biol; 2006 Feb 04; 26(3):883-97. PubMed ID: 16428444
    [Abstract] [Full Text] [Related]

  • 29. Development of expression systems for the production of recombinant human serum albumin using the MOX promoter in Hansenula polymorpha DL-1.
    Kang HA, Kang W, Hong WK, Kim MW, Kim JY, Sohn JH, Choi ES, Choe KB, Rhee SK.
    Biotechnol Bioeng; 2001 Sep 04; 76(2):175-85. PubMed ID: 11505387
    [Abstract] [Full Text] [Related]

  • 30. The zinc finger proteins Mxr1p and repressor of phosphoenolpyruvate carboxykinase (ROP) have the same DNA binding specificity but regulate methanol metabolism antagonistically in Pichia pastoris.
    Kumar NV, Rangarajan PN.
    J Biol Chem; 2012 Oct 05; 287(41):34465-73. PubMed ID: 22888024
    [Abstract] [Full Text] [Related]

  • 31. Identification and characterization of multiple A/T-rich cis-acting elements that control expression from Dictyostelium actin promoters: the Dictyostelium actin upstream activating sequence confers growth phase expression and has enhancer-like properties.
    Hori R, Firtel RA.
    Nucleic Acids Res; 1994 Nov 25; 22(23):5099-111. PubMed ID: 7800506
    [Abstract] [Full Text] [Related]

  • 32. Isolation of the Pichia pastoris glyceraldehyde-3-phosphate dehydrogenase gene and regulation and use of its promoter.
    Waterham HR, Digan ME, Koutz PJ, Lair SV, Cregg JM.
    Gene; 1997 Feb 20; 186(1):37-44. PubMed ID: 9047342
    [Abstract] [Full Text] [Related]

  • 33. Engineering the expression system for Komagataella phaffii (Pichia pastoris): an attempt to develop a methanol-free expression system.
    Takagi S, Tsutsumi N, Terui Y, Kong X, Yurimoto H, Sakai Y.
    FEMS Yeast Res; 2019 Sep 01; 19(6):. PubMed ID: 31408151
    [Abstract] [Full Text] [Related]

  • 34. Development of a mixed feed strategy for a recombinant Pichia pastoris strain producing with a de-repression promoter.
    Capone S, Horvat J, Herwig C, Spadiut O.
    Microb Cell Fact; 2015 Jul 10; 14():101. PubMed ID: 26156850
    [Abstract] [Full Text] [Related]

  • 35. Regulation of Pichia pastoris promoters and its consequences for protein production.
    Vogl T, Glieder A.
    N Biotechnol; 2013 May 25; 30(4):385-404. PubMed ID: 23165100
    [Abstract] [Full Text] [Related]

  • 36. [Effect of nitrogen source on gene expression of first steps of methanol utilization pathway in Pichia pastoris].
    Rumiantsev AM, Padkina MV, Sambuk EV.
    Genetika; 2013 Apr 25; 49(4):454-60. PubMed ID: 23866622
    [Abstract] [Full Text] [Related]

  • 37. Regulation of two distinct alcohol oxidase promoters in the methylotrophic yeast Pichia methanolica.
    Nakagawa T, Inagaki A, Ito T, Fujimura S, Miyaji T, Yurimoto H, Kato N, Sakai Y, Tomizuka N.
    Yeast; 2006 Jan 15; 23(1):15-22. PubMed ID: 16411161
    [Abstract] [Full Text] [Related]

  • 38. Reduced methanol input induces increased protein output by AOX1 promoter in a trans-acting elements engineered Pichia pastoris.
    Wang J, Wang X, Shi L, Zhang Y, Zhou X, Cai M.
    J Ind Microbiol Biotechnol; 2018 Jan 15; 45(1):25-30. PubMed ID: 29230578
    [Abstract] [Full Text] [Related]

  • 39. Cloning and sequencing of the alcohol oxidase-encoding gene (AOD1) from the formaldehyde-producing asporogeneous methylotrophic yeast, Candida boidinii S2.
    Sakai Y, Tani Y.
    Gene; 1992 May 01; 114(1):67-73. PubMed ID: 1587486
    [Abstract] [Full Text] [Related]

  • 40. Molecular characterization of the 3-phosphoglycerate kinase gene (PGK1) from the methylotrophic yeast Pichia pastoris.
    de Almeida JR, de Moraes LM, Torres FA.
    Yeast; 2005 Jul 15; 22(9):725-37. PubMed ID: 16034819
    [Abstract] [Full Text] [Related]


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