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Stability-Controllable Self-Immobilization of Carbonic Anhydrase Fused with a Silica-Binding Tag onto Diatom Biosilica for Enzymatic CO Capture and Utilization

ACS Appl Mater Interfaces. 2020; 
Suhyeok Kim, Kye Il Joo, Byung Hoon Jo, Hyung Joon Cha
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Codon Optimization … The coding gene for L2NC with an N- terminal flexible linker sequence (EGKSSGSGSESKST) was designed and de novo synthesized with codon optimization (Genscript, USA) along with HindIII and XhoI restriction sites at its N- and C-termini, respectively … Get A Quote

摘要

Exploiting carbonic anhydrase (CA), an enzyme that catalyzes the hydration of CO, is a powerful route for eco-friendly and cost-effective carbon capture and utilization. For successful industrial applications, the stability and reusability of CA should be improved, which necessitates enzyme immobilization. Herein, the ribosomal protein L2 (Si-tag) from was utilized for the immobilization of CA onto diatom biosilica, a promising renewable support material. The Si-tag was redesigned (L2NC) and genetically fused to CA from the marine bacterium (CA). One-step self-immobilization of CA-L2NC onto diatom biosilica by simple mixing was successfully achieved Si-tag-mediated strong binding, showing multilayer adsorpti... More

關鍵詞

Hydrogenovibrio marinus, biosilica, carbonic anhydrase, enzyme immobilization, macromolecular crowding, silica-binding tag
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