Team:Frankfurt/Biobricks
From 2013.igem.org
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The whole pathway to steviol has been split into to parts - the first leading to geranylgeranyl-diphosphate as a precursor and the second one leading from there on to steviol. | The whole pathway to steviol has been split into to parts - the first leading to geranylgeranyl-diphosphate as a precursor and the second one leading from there on to steviol. | ||
While last year's efforts resulted in the creation of a plasmid consisting of the first parth of the pathway, we managed it this year to build up Kaurenoic Acid Hydroxylase (KAH) which is crucial for the second part since this gene is intended to be used with thr ent-Kaurene oxidase and ent-kaurene synthase. Together they are responsible for the pathway from geranylgeranyl pyrophosphate to steviol. | While last year's efforts resulted in the creation of a plasmid consisting of the first parth of the pathway, we managed it this year to build up Kaurenoic Acid Hydroxylase (KAH) which is crucial for the second part since this gene is intended to be used with thr ent-Kaurene oxidase and ent-kaurene synthase. Together they are responsible for the pathway from geranylgeranyl pyrophosphate to steviol. |
Revision as of 00:23, 5 October 2013
Parts
BioBrick Assembly
The whole pathway to steviol has been split into to parts - the first leading to geranylgeranyl-diphosphate as a precursor and the second one leading from there on to steviol. While last year's efforts resulted in the creation of a plasmid consisting of the first parth of the pathway, we managed it this year to build up Kaurenoic Acid Hydroxylase (KAH) which is crucial for the second part since this gene is intended to be used with thr ent-Kaurene oxidase and ent-kaurene synthase. Together they are responsible for the pathway from geranylgeranyl pyrophosphate to steviol.
<groupparts>iGEM013 Frankfurt</groupparts>