Ageitos Jose Manuel, Chuah Jo-Ann, Numata Keiji
Enzyme Research Team, Biomass Engineering Program Cooperation Division, RIKEN Center for Sustainable Resource Science, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
Macromol Biosci. 2015 Jul;15(7):990-1003. doi: 10.1002/mabi.201400487. Epub 2015 Mar 31.
Cationic peptides such as poly(l-lysine) and poly(l-arginine) are important tools for gene delivery since they can efficiently condense DNA. It is difficult to produce cationic peptides by recombinant bacterial expression, and its chemical synthesis requires several steps of protection/deprotection and toxic agents. Chemo-enzymatic synthesis of peptides is a clean chemistry technique that allows fast production under mild conditions. With the aim to simplify the production of cationic peptides, the present work develops an enzymatic reaction which enables the synthesis of linear cationic peptides and, through terminal functionalization with tris(2-aminoethyl)amine, of branched cationic peptide conjugates, which show improved DNA complex formation. Cytotoxicity and transfection efficiency of all the chemo-enzymatically synthesized cationic peptides are evaluated for their novel use as gene delivery agents. Synthesized peptides exhibit transfection efficiencies comparable to previously reported monodisperse peptides. Chemo-enzymatic synthesis opens the door for efficient production of cationic peptides for their use as gene delivery carriers.
诸如聚(L-赖氨酸)和聚(L-精氨酸)之类的阳离子肽是基因递送的重要工具,因为它们能够有效地凝聚DNA。通过重组细菌表达来生产阳离子肽很困难,并且其化学合成需要几个保护/脱保护步骤以及使用有毒试剂。肽的化学酶促合成是一种清洁化学技术,能够在温和条件下快速生产。为了简化阳离子肽的生产,本研究开发了一种酶促反应,该反应能够合成线性阳离子肽,并通过用三(2-氨基乙基)胺进行末端功能化来合成支链阳离子肽缀合物,这些缀合物显示出改善的DNA复合物形成。对所有化学酶促合成的阳离子肽作为新型基因递送剂的细胞毒性和转染效率进行了评估。合成的肽表现出与先前报道的单分散肽相当的转染效率。化学酶促合成为高效生产用作基因递送载体的阳离子肽打开了大门。