Jung Hee Jung, Hwang Dong Soo, Wei Quan De, Cha Hyung Joon
Department of Chemical Engineering, Pohang University of Science and Technology, Pohang 790-784, Korea.
Biotechnol Prog. 2008 Jan-Feb;24(1):17-22. doi: 10.1021/bp070069b. Epub 2007 Jun 16.
The effective delivery of exogenous genes into eukaryotic cells is important for fundamental and biotechnological research. Protein-based gene delivery including histone proteins has recently emerged as a powerful technique for non-viral DNA transfer. Histones are DNA-binding proteins that function in DNA packaging and protection. In particular, histone H1 is largely responsible for the stabilization of higher-order chromatin structures. Several studies have examined the use of full-length histone H1-mediated gene transfer, and a few studies have investigated the use of C-terminal histone H1 fragments as gene-transfer materials. Previously, we cloned a novel histone H1 cDNA from the goldfish Carassius auratus and found that a recombinant histone H1 C-terminal short peptide (H1C) of 61 amino acids has comparable DNA binding and protection functions as full-length histone H1. In the present work, we successfully expressed and purified soluble recombinant H1C in an Escherichia coli expression system using a hexahistidine tag fusion strategy and providing tRNAs for rare codons. We confirmed its DNA-binding ability and found that this H1C peptide had similar or higher transfection efficiency in mammalian cells (human 293T and mouse NIH/3T3) than the widely used agent lipofectamine. Therefore, we suggest that this novel goldfish-derived recombinant histone H1 C-terminal short peptide could be used as a peptide-based gene-transfer mediator.
将外源基因有效导入真核细胞对于基础研究和生物技术研究都很重要。基于蛋白质的基因传递,包括组蛋白,最近已成为一种强大的非病毒DNA转移技术。组蛋白是在DNA包装和保护中起作用的DNA结合蛋白。特别是,组蛋白H1在很大程度上负责高阶染色质结构的稳定。几项研究已经考察了全长组蛋白H1介导的基因转移的应用,还有一些研究调查了使用C末端组蛋白H1片段作为基因转移材料的情况。此前,我们从金鱼鲫中克隆了一种新型组蛋白H1 cDNA,并发现一种由61个氨基酸组成的重组组蛋白H1 C末端短肽(H1C)具有与全长组蛋白H1相当的DNA结合和保护功能。在本研究中,我们使用六组氨酸标签融合策略并为稀有密码子提供tRNA,在大肠杆菌表达系统中成功表达并纯化了可溶性重组H1C。我们证实了其DNA结合能力,并发现这种H1C肽在哺乳动物细胞(人293T和小鼠NIH/3T3)中的转染效率与广泛使用的脂质体转染试剂相似或更高。因此,我们认为这种新型金鱼来源的重组组蛋白H1 C末端短肽可作为基于肽的基因转移介质。