Activities of the enzymes of formaldehyde catabolism in recombinant strains of Hansenula polymorpha

被引:0
|
作者
O. M. Demkiv
S. Ya. Paryzhak
E. P. Ishchuk
G. Z. Gayda
M. V. Gonchar
机构
[1] National Academy of Sciences of Ukraine,Institute of Cell Biology
[2] Rzeszow University,Branch Campus of the Faculty of Biotechnology
来源
Microbiology | 2011年 / 80卷
关键词
formaldehyde; NAD; - and glutathione-dependent formaldehyde dehydrogenase; recombinant overproducers;
D O I
暂无
中图分类号
学科分类号
摘要
Activities of the enzymes of formaldehyde (FA) catabolism in recombinant strains of the methylotrophic yeast Hansenula polymorpha overproducing NAD+- and glutathione-dependent formaldehyde dehydrogenase (FADH) were studied under different cultivation conditions and at elevated FA content. Southern dot-blot analysis confirmed the presence of six to eight copies of the target FLD1 gene in stable recombinant clones of H. polymorpha. Under certain cultivation conditions, the transformants resistant to elevated FA concentrations were shown to produce FADH and other bioanalytically important enzymes: formate dehydrogenase, alcohol dehydrogenase, alcohol oxidase, and formaldehyde reductase. The optimal cultivation conditions for recombinants were determined, resulting in maximum synthesis of FADH: methanol as a carbon source, methylamine as a nitrogen source, FA as an inducer, temperature of 37°C, and cells in the early exponential phase of growth.
引用
收藏
页码:307 / 313
页数:6
相关论文
共 50 条
  • [21] Formaldehyde and methanol biodegradation with the methylotrophic yeast Hansenula polymorpha in a model wastewater system
    Kaszycki, P
    Koloczek, H
    MICROBIOLOGICAL RESEARCH, 2000, 154 (04) : 289 - 296
  • [22] Improving the chromatographic purification protocol for recombinant hirudin produced by Hansenula polymorpha
    Ewies, Khaled S.
    Rohde, Jan
    Ibrahim, Ahmed
    El-Baz, Ashraf
    EGYPTIAN JOURNAL OF BOTANY, 2025, 65 (01):
  • [23] Alcoholic fermentation by wild-type Hansenula polymorpha and Saccharomyces cerevisiae versus recombinant strains with an elevated level of intracellular glutathione
    Grabek-Lejko, Dorota
    Kurylenko, Olena O.
    Sibirny, Vladimir A.
    Ubiyvovk, Vira M.
    Penninckx, Michel
    Sibirny, Andriy A.
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2011, 38 (11) : 1853 - 1859
  • [24] Intact and permeabilized cells of the yeast Hansenula polymorpha as bioselective elements for amperometric assay of formaldehyde
    Khlupova, Maria
    Kuznetsov, Boris
    Demkiv, Olha
    Gonchar, Mykhailo
    Csoregi, Elisabeth
    Shleev, Sergey
    TALANTA, 2007, 71 (02) : 934 - 940
  • [25] Molecular characterization of the Hansenula polymorpha FLD1 gene encoding formaldehyde dehydrogenase
    Baerends, RJS
    Sulter, GJ
    Jeffries, TW
    Cregg, JM
    Veenhuis, M
    YEAST, 2002, 19 (01) : 37 - 42
  • [26] Rapid selection of multiple gene integrant for the production of recombinant hirudin in Hansenula polymorpha
    Kim H.Y.
    Sohn J.H.
    Kim C.H.
    Rao K.J.
    Choi E.S.
    Kim M.K.
    Rhee S.K.
    Biotechnology and Bioprocess Engineering, 2000, 5 (1) : 1 - 6
  • [27] Formaldehyde and methanol biodegradation with the methylotrophic yeast Hansenula polymorpha. An application to real wastewater treatment
    Paweł Kaszycki
    Małgorzata Tyszka
    Przemysław Malec
    Henryk Kołoczek
    Biodegradation, 2001, 12 : 169 - 177
  • [28] Formaldehyde and methanol biodegradation with the methylotrophic yeast Hansenula polymorpha.: An application to real wastewater treatment
    Kaszycki, P
    Tyszka, M
    Malec, P
    Koloczek, H
    BIODEGRADATION, 2001, 12 (03) : 169 - 177
  • [29] CYTOCHEMICAL STAINING METHODS FOR LOCALIZATION OF KEY ENZYMES OF METHANOL METABOLISM IN HANSENULA-POLYMORPHA
    VEENHUIS, M
    VANDERKLEI, IJ
    METHODS IN ENZYMOLOGY, 1990, 188 : 411 - 420
  • [30] Hansenula polymorpha methanol metabolism genes enhance recombinant protein production in Komagataella phaffi
    Soltani, Maryam Khalifeh
    Arjmand, Sareh
    Siadat, Seyed Omid Ranaei
    Bagheri, Abdolreza
    Marashi, Seyed Hassan
    AMB EXPRESS, 2024, 14 (01):