Line 37: | Line 37: | ||
"image voie de biosynthese de siderophore" | "image voie de biosynthese de siderophore" | ||
− | <p>Previous work showed that siderophore which are molecule secreted by bacteria to catch iron are able to catch other metals by default. Especifically, many articles showed a high affinity of Desferrioxamine B ( produce by <i> Streptomyces coelicolor</i> for tetravalent metal ions and more specifically platinum. These results encouraged us to make a biobrick coding the sequence corresponding to the 4 enzymes involved on the metabolic pathway of Desferrioxamine B. <i> E. coli </i> was used to produce this biobrick. Produce a gram positive bacteria pathway in a gram negative bacteria is constaingnant, considering the risk of toxicity for the conductress bacteria. To counter this potential issue, we regulate trasnscription using the control of an inductible promotor (pBAD/araC). | + | <p>Previous work showed that siderophore which are molecule secreted by bacteria to catch iron are able to catch other metals by default. Especifically, many articles showed a high affinity of Desferrioxamine B ( produce by <i> Streptomyces coelicolor</i>) for tetravalent metal ions and more specifically platinum. These results encouraged us to make a biobrick coding the sequence corresponding to the 4 enzymes involved on the metabolic pathway of Desferrioxamine B. <i> E. coli </i> was used to produce this biobrick. Produce a gram positive bacteria pathway in a gram negative bacteria is constaingnant, considering the risk of toxicity for the conductress bacteria. To counter this potential issue, we regulate trasnscription using the control of an inductible promotor (pBAD/araC). |
Our strategy for the siderophore mobilisation results in two main steps :</p> | Our strategy for the siderophore mobilisation results in two main steps :</p> |