Literature DB >> 11050097

Peroxisomal remnant structures in Hansenula polymorpha Pex5 cells can develop into normal peroxisomes upon induction of the PTS2 protein amine oxidase.

F A Salomons1, K Nico Faber, M Veenhuis, I J van Der Klei.   

Abstract

We have analyzed the properties of peroxisomal remnants in Hansenula polymorpha pex5 cells. In such cells PTS1 matrix protein import is fully impaired. In H. polymorpha pex5 cells, grown on ethanol/ammonium sulfate, conditions that repressed the PTS2 protein amine oxidase (AMO), peroxisomal structures were below the limit of detection. In methanol/ammonium sulfate-grown cells, normal peroxisomes are absent, but a few small membranous structures were observed that apparently represented peroxisomal ghosts since they contained Pex14p. These structures were the target of a Pex10p.myc fusion protein that was produced in pex5 cells under the control of the homologous alcohol oxidase promoter (strain pex5::P(AOX).PEX10.MYC). Glycerol/methanol/ammonium sulfate-grown cells of this transformant were placed in fresh glucose/methylamine media, conditions that fully repress the synthesis of the Pex10p.myc fusion protein but induce the synthesis of AMO. Two hours after the shift Pex10p.myc-containing structures were detectable that had accumulated newly synthesized AMO protein and which during further cultivation developed in normal peroxisomes. Concurrently, the remaining portion of these structures was rapidly degraded. These findings indicate that peroxisomal remnants in pex5 cells can develop into peroxisomes. Also, as for normal peroxisomes in H. polymorpha, apparently a minor portion of these structures actually take part in the development of these organelles.

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Year:  2000        PMID: 11050097     DOI: 10.1074/jbc.M008476200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  2 in total

1.  Routing of Hansenula polymorpha alcohol oxidase: an alternative peroxisomal protein-sorting machinery.

Authors:  Katja Gunkel; Ralf van Dijk; Marten Veenhuis; Ida J van der Klei
Journal:  Mol Biol Cell       Date:  2003-12-29       Impact factor: 4.138

2.  In cellulo serial crystallography of alcohol oxidase crystals inside yeast cells.

Authors:  Arjen J Jakobi; Daniel M Passon; Kèvin Knoops; Francesco Stellato; Mengning Liang; Thomas A White; Thomas Seine; Marc Messerschmidt; Henry N Chapman; Matthias Wilmanns
Journal:  IUCrJ       Date:  2016-01-12       Impact factor: 4.769

  2 in total

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