human | Q5 |
P496 | ORCID iD | 0000-0003-1685-0141 |
P1153 | Scopus author ID | 55255379800 |
P735 | given name | Christian | Q18001597 |
Christian | Q18001597 | ||
P106 | occupation | researcher | Q1650915 |
P21 | sex or gender | male | Q6581097 |
Q27316823 | Aurone synthase is a catechol oxidase with hydroxylase activity and provides insights into the mechanism of plant polyphenol oxidases. |
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Q41981750 | Crystallization and preliminary X-ray crystallographic analysis of latent isoform PPO4 mushroom (Agaricus bisporus) tyrosinase. |
Q40514640 | Crystallization and preliminary X-ray crystallographic analysis of polyphenol oxidase from Juglans regia (jrPPO1). |
Q42183172 | Crystallization and preliminary crystallographic analysis of latent, active and recombinantly expressed aurone synthase, a polyphenol oxidase, from Coreopsis grandiflora. |
Q104691634 | Dahlia variabilis cultivar 'Seattle' as a model plant for anthochlor biosynthesis |
Q35418418 | Dihydroflavonol 4-reductase genes encode enzymes with contrasting substrate specificity and show divergent gene expression profiles in Fragaria species. |
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Q30369941 | Hen egg-white lysozyme crystallisation: protein stacking and structure stability enhanced by a Tellurium(VI)-centred polyoxotungstate |
Q38552895 | High level protein-purification allows the unambiguous polypeptide determination of latent isoform PPO4 of mushroom tyrosinase. |
Q28821912 | In situ formation of the first proteinogenically functionalized [TeW6O24O2(Glu)](7-) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster |
Q42868322 | Latent and active abPPO4 mushroom tyrosinase cocrystallized with hexatungstotellurate(VI) in a single crystal. |
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Q90011063 | Recombinant production of a hard-to-express membrane-bound cytochrome P450 in different yeasts-Comparison of physiology and productivity |
Q125418247 | Synthesis of Flavonol-Bearing Probes for Chemoproteomic and Bioinformatic Analyses of Asteraceae Petals in Search of Novel Flavonoid Enzymes |
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Q47106408 | The potential of hexatungstotellurate(VI) to induce a significant entropic gain during protein crystallization. |
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