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由双肽伴侣基序促进的表皮生长因子的增强透皮递送。

Enhanced transdermal delivery of epidermal growth factor facilitated by dual peptide chaperone motifs.

作者信息

Jin Pei-pei, Li Fen-fen, Ruan Ren-quan, Zhang Li, Man Na, Hu Yi, Zhou Wei, Wen Long-ping

机构信息

School of Life Sciences, University of Science and Technology of China, Hefei 230026, PR China.

出版信息

Protein Pept Lett. 2014 Jun;21(6):550-5. doi: 10.2174/0929866521666131224110314.

DOI:10.2174/0929866521666131224110314
PMID:24364869
Abstract

TD1, a peptide chaperone consisting of the sequence ACSSSPHKHCG, has been shown to facilitate transdermal delivery for protein molecules via either co-administration or the fusion approach. We previously reported that a single TD1 motif, fused to the N-terminus of human epidermal growth factor (hEGF) can significantly enhance the transdermal efficiency of the recombinant EGF protein. In an effort to further increase the transdermal efficiency, we have created EGF fusion proteins harboring dual TD1 motifs: TD1-hEGF-TD1, containing one TD1 motif at both the N- and the Cterminus, and TD1-TD1-hEGF, containing two tandem TD1 motifs at the N-terminus. Both TD1-hEGF-TD1 and TD1- TD1-hEGF proteins, expressed in Escherichia coli and purified to apparent homogeneity, exhibited biological activity similar to unmodified hEGF, as revealed by their relative abilities to stimulate fibroblast growth, promote fibroblast migration, and activate the MAP kinase signaling cascade. On the other hand, both TD1-hEGF-TD1 and TD1-TD1-hEGF proteins exhibited a transdermal efficiency enhancement. The improvement was >5-fold compared to unmodified hEGF and 3-fold over the hEGF fusion protein with only one TD1 motif attached. These findings provided proof-of-concept for improving transdermal delivery of protein actives through rational protein design.

摘要

TD1是一种由ACSSSPHKHCG序列组成的肽伴侣,已被证明可通过共给药或融合方法促进蛋白质分子的透皮递送。我们之前报道过,与人表皮生长因子(hEGF)的N端融合的单个TD1基序可显著提高重组EGF蛋白的透皮效率。为了进一步提高透皮效率,我们构建了含有双TD1基序的EGF融合蛋白:TD1-hEGF-TD1,在N端和C端均含有一个TD1基序;以及TD1-TD1-hEGF,在N端含有两个串联的TD1基序。在大肠杆菌中表达并纯化至表观均一的TD1-hEGF-TD1和TD1-TD1-hEGF蛋白,其刺激成纤维细胞生长、促进成纤维细胞迁移以及激活MAP激酶信号级联反应的相对能力表明,它们具有与未修饰的hEGF相似的生物活性。另一方面,TD1-hEGF-TD1和TD1-TD1-hEGF蛋白均表现出透皮效率的提高。与未修饰的hEGF相比,提高了5倍以上,与仅连接一个TD1基序的hEGF融合蛋白相比,提高了3倍。这些发现为通过合理的蛋白质设计改善蛋白质活性物质的透皮递送提供了概念验证。

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