Searched for: subject%3A%22Engineering%22
(1 - 5 of 5)
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van den Broek, M.A. (author), Ortiz Merino, R.A. (author), Bennis, N.X. (author), Wronska, A.K. (author), Else-Hassing, J. (author), Daran-Lapujade, P.A.S. (author), Daran, J.G. (author)
The biobased-economy aims to create a circular biotechnology ecosystem to transition from a fossil fuel-based to a sustainable industry based on biomass. For this, new microbial cell-factories are essential. We present the draft genome of the CEN.PK-derived Saccharomyces cerevisiae SpyCas9 expressing strain (IMX2600), that serve as chassis of...
journal article 2024
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Postma, E.D. (author), Else-Hassing, J. (author), Mangkusaputra, Venda (author), Geelhoed, J. (author), de la Torre, P. (author), van den Broek, M.A. (author), Mooiman, C. (author), Pabst, Martin (author), Daran, J.G. (author), Daran-Lapujade, P.A.S. (author)
The construction of powerful cell factories requires intensive genetic engineering for the addition of new functionalities and the remodeling of native pathways and processes. The present study demonstrates the feasibility of extensive genome reprogramming using modular, specialized de novo-assembled neochromosomes in yeast. The in vivo...
journal article 2022
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Boonekamp, F.J. (author), Dashko, S. (author), Duiker, Donna (author), Gehrmann, T. (author), van den Broek, M.A. (author), den Ridder, M.J. (author), Pabst, Martin (author), Robert, Vincent (author), Abeel, T.E.P.M.F. (author), Postma, E.D. (author), Daran, J.G. (author), Daran-Lapujade, P.A.S. (author)
The construction of powerful cell factories requires intensive and extensive remodelling of microbial genomes. Considering the rapidly increasing number of these synthetic biology endeavors, there is an increasing need for DNA watermarking strategies that enable the discrimination between synthetic and native gene copies. While it is well...
journal article 2020
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Vos, T. (author), De la Torre Cortes, P. (author), Van Gulik, W.M. (author), Pronk, J.T. (author), Daran-Lapujade, P.A.S. (author)
Introduction: Saccharomyces cerevisiae has become a popular host for production of non-native compounds. The metabolic pathways involved generally require a net input of energy. To maximize the ATP yield on sugar in S. cerevisiae, industrial cultivation is typically performed in aerobic, sugar-limited fed-batch reactors which, due to constraints...
journal article 2015
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Kuijpers, N.G.A. (author), Chroumpi, S. (author), Vos, T. (author), Solis-Escalante, D. (author), Bosman, D. (author), Pronk, J.T. (author), Daran, J.G. (author), Daran-Lapujade, P.A.S. (author)
In vivo assembly of overlapping fragments by homologous recombination in Saccharomyces cerevisiae is a powerful method to engineer large DNA constructs. Whereas most in vivo assembly methods reported to date result in circular vectors, stable integrated constructs are often preferred for metabolic engineering as they are required for large-scale...
journal article 2013
Searched for: subject%3A%22Engineering%22
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