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Dive into the research topics where David John Mead is active.

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Featured researches published by David John Mead.


Yeast | 2000

Constitutive expression of recombinant proteins in the methylotrophic yeast Hansenula polymorpha using the PMA1 promoter

Helen Cox; David John Mead; Peter E. Sudbery; R. Mark Eland; Ilaria Maria Mannazzu; Leslie Evans

The methylotrophic yeast H. polymorpha is a popular system for the expression of recombinant proteins using the strong and regulatable methanol oxidase (MOX) promoter. Here we show that the constitutive PMA1 promoter can programme the expression of two heterologous proteins, glucose oxidase and human serum albumin. A constitutive promoter provides a useful additional facility to the H. polymorpha expression system because it allows a simplified fermentation regime, avoids the use of methanol, which is both toxic and an explosive hazard, and allows more flexibility for ectopic gene expression during the course of academic studies. A fragment previously isolated in a promoter screen, using glucose oxidase (GOD) as a reporter gene, was shown to consist of the promoter region and the first 659 bp of the H. polymorpha PMA1 gene, encoding the plasma membrane H+‐ATPase. When the PMA1 promoter was optimally aligned with the GOD coding region, it produced 185 mg/l glucose oxidase in high cell density fed batch fermentations, whereas in previous experiments using the MOX promoter, a yield of 500 mg/l was recovered. The PMA1 promoter was also used to express recombinant human serum albumin (rHA) in H. polymorpha. In high cell density fermentations the PMA1 promoter produced 460 mg/l rHA, whereas 280 mg/l rHA was obtained using the MOX promoter. Taken together, these experiments show that the HpPMA1 programmes the constitutive expression of recombinant proteins and provides a yield comparable to that from the MOX promoter. Copyright


Yeast | 1993

Expression of the glucose oxidase gene from Aspergillus niger in Hansenula polymorpha and its use as a reporter gene to isolate regulatory mutations

Martin Hodgkins; Peter E. Sudbery; David John Mead; D. James Ballance; Andrew Robert Goodey


Yeast | 1994

Increase in copy number of an integrated vector during continuous culture of Hansenula polymorpha expressing functional human haemoglobin

Sarah C. Gilbert; H. van Urk; A. J. Greenfield; M. J. McAvoy; K. A. Denton; D. Coghlan; G. D. Jones; David John Mead


Archive | 2000

Chromatographic process for purification of albumin

Urk Hendrik Van; David John Mead; Philip Harvey Morton; Andrew John Cartwright; Jason Cameron; David James Ballance; Michel Gaston Joseph Grandgeorge; Stephen Berezenko; John Rodney Woodrow; Darrell Sleep; Jean-Luc Bernard Veron


Archive | 1989

Fermentation of genetically engineered yeast in the presence of a polyalkylene compound.

Peter Maurice Clarke; Stephen Hugh Collins; David John Mead


Archive | 1995

Process for preparing human serum albumine by fermenting a genetically engineered microorganism in the presence of a polyalkylene compound

Peter Maurice Clarke; Stephen Hugh Collins; David John Mead


Archive | 2000

Albumine serique humaine

David James Ballance; Stephen Berezenko; Jason Delta Biotechnology Limited Cameron; Andrew John Cartwright; David John Mead; Philip Harvey Morton; Darrell Sleep; Urk Hendrik Van; Jean-Luc Bernard Veron; John Rodney Woodrow


Archive | 2000

Procédé chromatographique de purification de l'albumine

David James Ballance; Stephen Berezenko; Jason Cameron; Andrew John Cartwright; Michel Gaston Joseph Grandgeorge; David John Mead; Philip Harvey Morton; Darrell Sleep; Urk Hendrik Van; Jean-Luc Bernard Veron; John Rodney Woodrow


Archive | 2000

Verfahren zur Herstellung von rekombinantem Albumin mit reduzierter Mannosylierung

David James Ballance; Michel Gaston Joseph Grandgeorge; David John Mead; Darrell Sleep; Urk Hendrik Van


Archive | 2000

Chromatographisches verfahren zur reinigung von albumin

Urk Hendrik Van; David John Mead; Philip Harvey Morton; Andrew John Cartwright; Jason Cameron; David James Ballance; Michel Gaston Joseph Grandgeorge; Stephen Berezenko; John Rodney Woodrow; Darrell Sleep; Jean-Luc Bernard Veron

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Darrell Sleep

University of Nottingham

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Jason Cameron

University of Nottingham

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