• Title/Summary/Keyword: Protein transduction domains (PTD)

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Enhanced Transduction of Cu,Zn-Superoxide Dismutase with HIV-1 Tat Protein Transduction Domains at Both Termini

  • Eum, Won Sik;Jang, Sang Ho;Kim, Dae Won;Choi, Hee Soon;Choi, Soo Hyun;Kim, So Young;An, Jae Jin;Lee, Sun Hwa;Han, Kyuhyung;Kang, Jung Hoon;Kang, Tae-Cheon;Won, Moo Ho;Cho, Yong Joon;Choi, Jin Hi;Kim, Tae Yoon;Park, Jinseu;Choi, Soo Young
    • Molecules and Cells
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    • v.19 no.2
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    • pp.191-197
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    • 2005
  • The human immunodeficiency virus type 1 (HIV-1) Tat protein transduction domain (PTD) is responsible for highly efficient protein transduction across plasma membranes. In a previous study, we showed that Tat-Cu,Zn-superoxide dismutase (Tat-SOD) can be directly transduced into mammalian cells across the lipid membrane barrier. In this study, we fused the human SOD gene with a Tat PTD transduction vector at its N- and/or C-terminus. The fusion proteins (Tat-SOD, SOD-Tat, Tat-SOD-Tat) were purified from Escherichia coli and their ability to enter cells in vitro and in vivo compared by Western blotting and immunohistochemistry. The transduction efficiencies and biological activities of the SOD fusion protein with the Tat PTD at either terminus were equivalent and lower than the fusion protein with the Tat PTD at both termini. The availability of a more efficient SOD fusion protein provides a powerful vehicle for therapy in human diseases related to this anti-oxidant enzyme and to reactive oxygen species.

Effect of cell growth inhibition by eukaryotic initiation factor 2 derived peptides (진핵생물 개시인자 유래 펩타이드의 세포 성장 억제 효능)

  • Yu, HanJin;Lim, Kwang Suk
    • Journal of Industrial Technology
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    • v.40 no.1
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    • pp.1-6
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    • 2020
  • In the process of protein transcription and translation, various protein complexes bind to DNA, and all processes are precisely controlled. Among the proteins constituting this complex, a peptide derived from eukaryotic initiation factor (eIF) 2 was synthesized. In addition, in order to increase the efficiency of transduction of this peptide into cells, peptides with polyarginine, one of the protein transduction domains (PTD), were synthesized. Cell growth inhibition was confirmed in HER2 positive breast cancer (SK-Br-3) and HER2 negative breast cancer (MDA-MB-231), and cardiomyocytes (H9c2). The peptide with polyarginine had high transduction efficiency in all cells, and had excellent cancer cell growth inhibitory effects. The peptide used in this study might be useful peptide therapeutics for the treatment of cancer through future research.

Expression Properties and Skin Permeability of Human Basic Fibroblast Growth Factor with or without PTD Fused to N- or C-terminus in Escherichia coli (대장균 발현시스템에서 단백질 전달 도메인 PTD가 인간 섬유아세포 성장인자(FGF2)의 N- 또는 C-말단에 결합 되었을 때 미치는 재조합 단백질 복합체의 발현 특성과 피부 투과능력)

  • Park, In-Sun;Choe, Chung-Hyeon;Kwon, Bo-Ra;Choi, Young-Ji;Kwon, Tae-Ho;Yu, Kang-Yeol;Lee, Juhyung;Choo, Young-Moo
    • Journal of Life Science
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    • v.28 no.3
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    • pp.275-283
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    • 2018
  • Human fibroblast growth factor (FGF) has the potential to be a commercially important therapeutic or cosmeceutical agent due to its ability to generate tissue and heal wounds. Granting permeability into skin tissues increases the therapeutic effects of FGF. Thus, several researchers have attempted the fusion of FGF conjugates with protein transduction domains (PTDs) to investigate the transduction ability and therapeutic effects of FGF. Less is known, however, about whether the location of PTD fused to the N- or C-terminus of FGF proteins has a significant impact on the folding and stability in Escherichia coli, and eventually, on transduction. Here, we report cloning of human basic fibroblast growth factor (FGF2) as a control and FGF2 with PTD fused to the N- or C-terminal ends of FGF proteins by an overlap extension PCR. We performed expression, verified expression properties of recombinant FGF2 without or with PTD fused to the N-terminus and the C-terminus, and investigated transduction ability into tissue by treating the dorsal skin of mice subjects. As a result, FGF2 and FGF2-PTD (fused to C-terminus) fusion protein were expressed as soluble forms suitable for straight-forward purification, unlike insoluble PTD-FGF2 (fused to N-terminus), but only FGF2-PTD fusion protein could transduce into the dorsal skin tissue of the mice subjects. Our results suggest that FGF2 with PTD fused to the C-terminus is more efficient than other options in terms of expression, purification, and delivery into skin tissue, as it does not require labor-intensive, costly, and time-consuming methods.

Cellular Uptake Behavior of Poly(D,L-lactide-co-glycolide) Nanoparticles Derivatized with HIV-1 Tat49-57 Peptide (Abbreviated Title: Tat-PLGA Nanoparticles)

  • Park, Ju-Young;Nam, Yoon-Sung;Kim, Jun-Oh;Han, Sang-Hoon;Chang, Ih-Seop
    • Journal of Pharmaceutical Investigation
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    • v.34 no.2
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    • pp.101-106
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    • 2004
  • This work aims at examining the cellular uptake behavior of poly(D,L-lactide-co-glycolide) (PLGA) nanoparticles derivatized with a protein transduction domain (PTD) using HeLa cells. For this purpose, $Tat_{49-57}$ peptide derived from transcriptional activation (Tat) protein of HIV type-1 was covalently conjugated to the terminal end of PLGA. Nanoparticles were ten prepared with the $Tat_{49-57}-PLGA$ conjugates by a spontaneous phase inversion method. The prepared particles had a mean diameter of ca. 84 nm, as measured by dynamic light scattering. The interaction of the Tat-PLGA nanoparticles with cells was examined by using confocal laser scanning microscopy. It was found tat Tat-PLGA nanoparticles incubated with HeLa cells could efficiently translocate into cytoplasm, while plain PLGA nanoparticles showed negligible cellular uptake. In addition, even at $4^{\circ}C$ or in the presence of sodium azide significant cellular internalization of Tat-PLGA nanoparticles was still observed. These results indicate that a non-endocytotic translocation mechanism might be involved in the cellular uptake of Tat-PLGA nanoparticles.

Establishment of a Stable Cell Line Expressing Human BMP2/7-PTD for Efficient Osteogenic Induction (효과적인 뼈 세포분화 유도를 위한 유전자 재조합 PTD 융합 인간 뼈 형성촉진인자2/7(BMP2/7-PTD)를 발현하는 세포주 개발)

  • Park, Seung-Won;Kang, Seok-Woo;Goo, Tae-Won;Kim, Seong-Ryul;Paik, Soon-Young
    • Journal of Life Science
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    • v.22 no.4
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    • pp.456-465
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    • 2012
  • Heterodimeric recombinant human bone morphogenetic proteins (rhBMPs) are powerful tools for bone tissue engineering. However, BMPs have several important limitations in their application to bone regeneration. BMPs have a short half-life and must be used in high concentrations, which may be cost-inefficient. To overcome these problems, we established a stable cell line that expressed the fusion protein comprised of recombinant human BMP2/7 heterodimer protein and PTD (rhBMP2/7-PTD). This stable cell line enabled high process yields by continuously expressing rhBMP2/7-PTD products at high levels throughout cultivation. This synthesized BMP7 was fused to a BMP2 protein with four glycine residues (to allow free bond rotation of the domains) and PTD. To demonstrate that the rhBMP2/7-PTD protein that was secreted from an rhBMP2/7-PTD-expressing stable cell line exhibited biological activity consistent with its role as an osteogenic differentiation induction growth factor, we evaluated BMP-induced ALP activity. Our results suggest that this cell line may be a powerful and efficient tool for applications such as bone tissue regeneration.