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- W2153071208 abstract "One of the greatest contemporary environmental issues is the pollution of heavy metals into waterways. However, removal of heavy metal ions via bioremediation may be a possible solution. C. vibrioides has a biphasic life cycle that includes stalked and motile life forms. Using modified C. vibrioides paracrystalline RsaA surface layer proteins (S-layer proteins), our team hopes to bind lead, and other metal ions for decontamination through use of a cylindrical filtration system. It is known that modified S-layers can be secreted through a Type-1 secretion system displayed on the microbial surface. Our initial target sequence (TNTLSNN) was chosen for its ability to bind Pb, which we have chosen due to its role as a major contaminant. Attachment of serine, glycine, and glutamic acid flanking sequences were used to increase the stability and assist in secretion of the modified RsaA proteins. We have also generated 6x-Histidine sequences for their inherent binding to metals such as Ni, and Co. We confirmed expression of Pb lead binding sequences. The Future goals of our lab include the observations of heavy metal binding efficiencies of each engineered RsaA surface, and the generation of prototype binding cartridges. Abstract" @default.
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- W2153071208 date "2015-04-17" @default.
- W2153071208 modified "2023-09-26" @default.
- W2153071208 title "Engineering the S-Layer Protein RsaA in Caulobacter vibrioides for Heavy Metal Bioremediation" @default.
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