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在脂质双层中作为 DNA 激活物的章鱼两亲分子的综合筛选:对运输、传感和细胞摄取的影响。

Comprehensive screening of octopus amphiphiles as DNA activators in lipid bilayers: implications on transport, sensing and cellular uptake.

机构信息

Department of Organic Chemistry, NCCR Chemical Biology, University of Geneva, Geneva, Switzerland.

出版信息

Org Biomol Chem. 2011 Apr 21;9(8):2641-7. doi: 10.1039/c0ob00948b. Epub 2011 Mar 4.

Abstract

Dynamic octopus amphiphiles contain one charged "head," here a guanidinium cation, together several hydrophobic "tails" (or "tentacles") that can be attached and exchanged in situ by reversible hydrazone formation. Quite surprisingly, their ability to activate DNA as transporters in lipid bilayer membranes was found to increase with the number of tails (up to four) as well as with their length (up to eight carbons). Both encouraged and puzzled by these results, we decided that a comprehensive screening of octopus amphiphiles with regard to number (from one to six) and length (from three to eighteen carbons) of their tails would be appropriate at this point. For this purpose, we here report the synthesis of cationic hexahydrazide peptide dendrons together with that of aldehydes with long, saturated, unsaturated and branched hydrophobic tails. Comprehensive screening of the completed collection of tails and heads reveals that the ability of octopus amphiphiles to activate DNA transporters shifts with increasing number of tails to decreasing length of the tails. Moreover, cis-alkenyl and branched alkyl tails are more active than their linear analogs, branched aromatic tails are best. These overall very meaningful trends for octopus amphiphiles will be of importance for sensing applications and fragrant cellular uptake.

摘要

动态章鱼两亲物含有一个带电荷的“头”,这里是胍鎓阳离子,以及几个疏水“尾巴”(或“触手”),它们可以通过可逆腙形成原位连接和交换。非常令人惊讶的是,它们作为脂质双层膜中转运体激活 DNA 的能力被发现随着尾巴数量(最多四个)以及它们的长度(最多八个碳原子)的增加而增加。这些结果既令人鼓舞,又令人困惑,我们决定在这一点上全面筛选章鱼两亲物的数量(从一个到六个)和长度(从三个到十八个碳原子)。为此,我们在这里报告了阳离子六腙肽树状大分子以及带有长、饱和、不饱和和支链疏水尾巴的醛的合成。完成的尾巴和头部集合的全面筛选表明,章鱼两亲物激活 DNA 转运体的能力随着尾巴数量的增加而向尾巴长度的减少转移。此外,顺式烯基和支链烷基尾巴比其线性类似物更活跃,支链芳基尾巴最好。这些对于章鱼两亲物非常有意义的总体趋势对于传感应用和芳香细胞摄取将非常重要。

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