| Literature DB >> 27606074 |
Chanuk Jeong1, Jisang Yoo1, DaeYong Lee1, Yeu-Chun Kim1.
Abstract
BACKGROUND: Cell penetrating pepn>tides (CPPs) as one class of non-viral vectors, have been widely explored as a delivery tool due to their cell-penetrating capability with low cytotoxicity. However, CPPs have reported to have low gene transfection efficiency mainly due to the fact that DNA is larger than other biomolecules. On the other hand, the conventional linear CPPs are unstable for constructing the DNA complexes with it. Thus, here we designed a branched CPP using disulfide bridges based on the linear TAT peptide, to enhance the gene delivery efficiency in a better way.Entities:
Keywords: Branched TAT; Cell penetrating peptides; Gene delivery; TAT; Transfection
Year: 2016 PMID: 27606074 PMCID: PMC5013572 DOI: 10.1186/s40824-016-0076-0
Source DB: PubMed Journal: Biomater Res ISSN: 1226-4601
Fig. 1Synthesis and schematic illustration of the BTAT/pGFP complex delivery for the gene transfection
Amino acid sequences, molecular weight and number of amino acids of CPPs
| CPPs | Amino acid sequences | Molecular weight (Da) | Number of amino acids |
|---|---|---|---|
| TAT | YGRKKRRQRRR | 1560 | 11 |
| mTAT | CYGRKKRRQRRRCYGRKKRRQRRRC | 3409 | 25 |
Fig. 2Synthesis and characterization of the BTAT. a The absolute molecular weight of the branched TAT (b) The CD spectra determination of the TAT, modified TAT and branched TAT
Fig. 3a The agarose gel retardation assays and b Particle sizes and c zeta-potential values of the CPP/pGFP complexes at the various N/P ratios. d TEM images of the BTAT/pGFP complex. e Size change of the BTAT/pGFP complex in water after 10 mM GSH treatment
Fig. 4Cell viability test. Dose-dependent cytotoxicities of CPP/pGFP complexes in the HeLa cells
Fig. 5Transfection efficiency of pGFP complex in HeLa cells. a Quantification of the transfection efficiency using flow cytometry (b) Confocal laser scanning microscopy images of the expression of the green fluorescence protein. The images obtained at a 200x magnification. The scale bars represent 50 μm