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Cyclized proteins with tags as permeable and stable cargos for delivery into cells and liposomes.
Lee, Yeonju; Kim, Kyung-Min; Nguyen, Duc Long; Jannah, Fadilatul; Seong, Hyun-Jung; Kim, Jong-Man; Kim, Young-Pil.
  • Lee Y; Department of Life Science, Hanyang University, Seoul 04763, Republic of Korea.
  • Kim KM; Department of Life Science, Hanyang University, Seoul 04763, Republic of Korea.
  • Nguyen DL; Department of Life Science, Hanyang University, Seoul 04763, Republic of Korea; Research Institute for Convergence of Basic Science, Hanyang University, Seoul 04763, Republic of Korea.
  • Jannah F; Department of Chemical Engineering, Hanyang University, Seoul 04763, Republic of Korea.
  • Seong HJ; Department of Life Science, Hanyang University, Seoul 04763, Republic of Korea.
  • Kim JM; Department of Chemical Engineering, Hanyang University, Seoul 04763, Republic of Korea; Institute of Nano Science and Technology, Hanyang University, Seoul 04763, Republic of Korea. Electronic address: jmk@hanayng.ac.kr.
  • Kim YP; Department of Life Science, Hanyang University, Seoul 04763, Republic of Korea; Research Institute for Convergence of Basic Science, Hanyang University, Seoul 04763, Republic of Korea; Institute of Nano Science and Technology, Hanyang University, Seoul 04763, Republic of Korea; Research Institute fo
Int J Biol Macromol ; 252: 126520, 2023 Dec 01.
Article en En | MEDLINE | ID: mdl-37625744
ABSTRACT
Despite the therapeutic potential of recombinant proteins, their cell permeabilities and stabilities remain significant challenges. Here we demonstrate that cyclized recombinant proteins can be used as universal cargos for permeable and stable delivery into cells and polydiacetylene liposomes. Utilizing a split intein-mediated process, cyclized model fluorescent proteins containing short tetraarginine (R4) and hexahistidine (H6) tags were generated without compromising their native protein functions. Strikingly, as compared to linear R4/H6-tagged proteins, the cyclized counterparts have substantially increased permeabilities in both cancer cells and synthetic liposomes, as well as higher resistances to enzymatic degradation in cancer cells. These properties are likely a consequence of structural constraints imposed on the proteins in the presence of short functional peptides. Additionally, photodynamic therapy by cyclized photoprotein-loaded liposomes in cancer cells was significantly improved in comparison to that by their non-cyclized counterparts. These findings suggest that our strategy will be universally applicable to intercellular delivery of proteins and therapeutics.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Péptidos / Liposomas Tipo de estudio: Prognostic_studies Idioma: En Año: 2023 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Péptidos / Liposomas Tipo de estudio: Prognostic_studies Idioma: En Año: 2023 Tipo del documento: Article