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Bouwknegt, J. (author), Vos, A.M. (author), Ortiz Merino, R.A. (author), van Cuylenburg, Daphne C. (author), Luttik, M.A.H. (author), Pronk, J.T. (author)
Analysis of predicted fungal proteomes revealed a large family of sequences that showed similarity to the Saccharomyces cerevisiae Class-I dihydroorotate dehydrogenase Ura1, which supports synthesis of pyrimidines under aerobic and anaerobic conditions. However, expression of codon-optimised representatives of this gene family, from the...
journal article 2022
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Bouwknegt, J. (author), Koster, C.C. (author), Vos, A.M. (author), Ortiz Merino, R.A. (author), Wassink, Mats (author), Luttik, M.A.H. (author), van den Broek, M.A. (author), Hagedoorn, P.L. (author), Pronk, J.T. (author)
Following publication of the original article [1], the authors reported errors in the text of the Results section and in Table 2. It refers to a mutation in a yeast gene as VPS1<sup>I410L</sup> and to the corresponding change in the Vps1 amino-acid sequence as I410L. The correct descriptions should read VPS1<sup>I401L</sup> and I401L,...
journal article 2021
document
Bouwknegt, J. (author), Koster, C.C. (author), Vos, A.M. (author), Ortiz Merino, R.A. (author), Wassink, Mats (author), Luttik, M.A.H. (author), van den Broek, M.A. (author), Hagedoorn, P.L. (author), Pronk, J.T. (author)
Background: In most fungi, quinone-dependent Class-II dihydroorotate dehydrogenases (DHODs) are essential for pyrimidine biosynthesis. Coupling of these Class-II DHODHs to mitochondrial respiration makes their in vivo activity dependent on oxygen availability. Saccharomyces cerevisiae and closely related yeast species harbor a cytosolic Class...
journal article 2021