• 제목/요약/키워드: cationic peptide

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Effects of the Hinge Region of Cecropin A(1-8)-Melittin 2(1-12), a Synthetic Antimicrobial Peptide on Antibacterial, Antitumor, and Vesicle-Disrupting Activity

  • Shin, Song-Yub;Kang, Joo-Hyun;Jang, So-Yun;Kim, KiI-Lyong;Hahm, Kyung-Soo
    • BMB Reports
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    • 제32권6호
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    • pp.561-566
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    • 1999
  • CA(1-8)-ME(1-12) [CA-ME], composed of cecropin A(1-8) and melittin(1-12), is a synthetic antimicrobial peptide having potent antibacterial and antitumor activities with minimal hemolytic activity. In order to investigate the effects of the flexible hinge sequence, Gly-Ile-Gly, of CA-ME on antibiotic activity, CA-ME and three analogues, CA-ME1, CA-ME2, and CA-ME3, were synthesized. The Gly-Ile-Gly sequence of Ca-ME was deleted in CA-ME1 and replaced with Pro and Gly-Pro-Gly in CA-ME2 and CA-ME3, respectively. CA-ME1 and CA-ME3 showed a significant decrease in antitumor activity and phospholipid vesicle-disrupting ability. However, CA-ME2 showed similar antitumor and vesicle-disrupting activities, as compared with CA-ME. These results suggest that the flexibility or ${\beta}$-turn induced by Gly-Ile-Gly or Pro in the central part of CA-ME may be important in the electrostatic interaction of the N-terminus cationic ${\alpha}$-helical region with the cell membrane surface and the hydrophobic interaction of the C-terminus amphipathic ${\alpha}$-helical region with the hydrophobic acyl chains in the cell membrane. CA-ME3 exhibited lower antitumor and vesicle-disrupting activities than CA-ME and CA-ME2. This result suggests that the excessive ${\beta}$-turn structure caused by the Gly-Pro-Gly sequence in CA-ME3 seems to interrupt ion channel/pore formation in the lipid bilayer. We concluded that the appropriate flexibility or bilayer. We concluded that the appropriate flexibility or ${\beta}$-turn structure provided by the central hinge is responsible for the effective antibiotic activity of the antimicrobial peptides with the helix-hinge-helix structure.

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Supported Liquid Membrane을 이용한 Short Peptide의 추출 (Extraction of Short Peptide Using Supported Liquid Membranes)

  • 이재흥;박기문
    • 한국축산식품학회지
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    • 제25권3호
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    • pp.340-343
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    • 2005
  • SLM을 이용한 short peptide의 분리를 목적으로 donor phase의 pH 및 acceptor phase의 염농도, membrane의 carrier 농도 차에 따른 peptide의 이동속도를 확인한 결과는 다음과 같다. 즉, pH 7.0 이하에서는 acceptor phase의 NaCl 농도나 carrier 농도에 상관없이 Gly-Tyr의 이동속도는 거의 영향을 끼치지 않았고, pH 7.0 이상에서는 이동속도가 급격히 증가함을 알 수 있었다. 그리고 Aliquat가 $8\%$ 함유된 D-SLM과 $20\%$ 함유된 H-SLM의 경우 Gly-Tyr의 이동속도는 H-SLM이 D-SLM보다 pH 9.0, 0.25 M NaCl 용액에서는 약 3배, pH 8.0, 1.0 M NaCl용액에서는 10배 정도 빠르게 이동하였다. 또한 H-SLM에서 acceptor phase의 NaCl 농도가 1.0 M 인 경우 0.25 M에 비해 10배 정도 이동속도가 빠른 것으로 나타났다. 따라서, short peptide인 Gly-Tyr의 SLM을 이용한 추출에서 donor phase의 pH 7.0 이상, carrier 농도가 높은 H-SLM 사용, acceptor phase의 염 농도가 높을수록 이동속도가 빠른 것으로 나타났다.

Synthesis of 3β [L-Lysinamide-carbamoyl] Cholesterol Derivatives by Solid-Phase Method and Characteristics of Complexes with Antisense Oligodeoxynucleotides

  • Lee, Eun-Jung;Lee, Min-hyung;Park, Jong-Sang;Choi, Joon-Sig
    • Bulletin of the Korean Chemical Society
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    • 제27권7호
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    • pp.1020-1024
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    • 2006
  • In this report, we describe the synthesis of mono- and di-valent cationic $3\beta$ [L-Lysinamide-carbamoyl] cholesterol (K-Chol) derivatives by solid-phase peptide synthesis method and the characteristics of K-Chol/antisense oligodeoxynucleotide (ODN) complexes. K-Chol was able to interact with antisense ODNs electrostatically and constructed nanometer-sized complexes of 50-100 nm in diameter. The formation of K-Chol/antisense ODN complexes was demonstrated by non-denaturing polyacrylamide gel electrophoresis assay and atomic force microscopy. The cell-associated radioactivity was measured to monitor the cellular uptake of the complexes containing radioactive antisense ODNs using HL 60 cells.

Anticancer Activity of the Antimicrobial Peptide Scolopendrasin VII Derived from the Centipede, Scolopendra subspinipes mutilans

  • Lee, Joon Ha;Kim, In-Woo;Kim, Sang-Hee;Kim, Mi-Ae;Yun, Eun-Young;Nam, Sung-Hee;Ahn, Mi-Young;Kang, Dongchul;Hwang, Jae Sam
    • Journal of Microbiology and Biotechnology
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    • 제25권8호
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    • pp.1275-1280
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    • 2015
  • Previously, we performed de novo RNA sequencing of Scolopendra subspinipes mutilans using high-throughput sequencing technology and identified several antimicrobial peptide candidates. Among them, a cationic antimicrobial peptide, scolopendrasin VII, was selected based on its physicochemical properties, such as length, charge, and isoelectric point. Here, we assessed the anticancer activities of scolopendrasin VII against U937 and Jurkat leukemia cell lines. The results showed that scolopendrasin VII decreased the viability of the leukemia cells in MTS assays. Furthermore, flow cytometric analysis and acridine orange/ethidium bromide staining revealed that scolopendrasin VII induced necrosis in the leukemia cells. Scolopendrasin VII-induced necrosis was mediated by specific interaction with phosphatidylserine, which is enriched in the membrane of cancer cells. Taken together, these data indicated that scolopendrasin VII induced necrotic cell death in leukemia cells, probably through interaction with phosphatidylserine. The results provide a useful anticancer peptide candidate and an efficient strategy for new anticancer peptide development.

Synthesis and Antibiotic Activities of CRAMP, a Cathelin-related Antimicrobial Peptide and Its Fragments

  • 하종명;신송엽;강신원
    • Bulletin of the Korean Chemical Society
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    • 제20권9호
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    • pp.1073-1077
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    • 1999
  • CRAMP, a 37-amino acid cationic antimicrobial peptide was recently deduced from the cDNA cloned from mouse femoral marrow RNA. In order to investigate the structure-activity relationship and functional region of CRAMP, CRAMP and its 18-mer overlapping peptides were synthesized by the solid phase method. CRAMP showed broad spectrum antibacterial activity against both Gram-positive and Gram-negative bacterial strains (MIC: 3.125-6.25 μM) but had no hemolytic activity until 50 μM. CRAMP was found to have a potent anticancer activity (IC50: 12-23 μM) against two human small cell lung cancer cell lines. Furthermore, CRAMP was found to display faster bactericidal rate in B. subtilis rather than E. coli in the kinetics of bacterial killing. Among 18-meric overlapping fragment peptides, only CRAMP (16-33) displayed potent antibacterial activity (MIC: 12.5-50 μM) against several bacteria with no hemolytic activity. Circular dichroism (CD) spectra anal-ysis indicated that CRAMP and its analogues will form the amphipathic α-helical conformation in the cell membranes similar to other antimicrobial peptides, such as cecropins and magainins.

Studies of Tertiary Structures of Mastoparan B and Alanine Analogues by NMR Spectroscopy

  • Kyeunghee Yu;Kang, Shin-Won;Park, Nam-Gyu;Kim, Yangmee
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1999년도 학술발표회 진행표 및 논문초록
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    • pp.33-33
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    • 1999
  • Mastoparan B (MP-B), an antimicrobial cationic tetradecapeptide amide isolated from the venom of the hornet Vespa basalis, is an amphiphilic ${\alpha}$-helical peptide. In order to study the relationship between the structure and biological activity, we used the three analogues by replacing amino acids with alanine (4LysAla: 4MP-B, 12-LYsAla: 12MP-B, 9TrpAla: 9Mp-B).(omitted)

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Structure and Bacterial Cell Selectivity of a Fish-Derived Antimicrobial Peptide, Pleurocidin

  • Yang Ji-Young;Shin Song-Yub;Lim Shin-Saeng;Hahm Kyung-Soo;Kim Yang-Mee
    • Journal of Microbiology and Biotechnology
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    • 제16권6호
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    • pp.880-888
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    • 2006
  • Pleurocidin, an $\alpha$-helical cationic antimicrobial peptide, was isolated from skin mucosa of winter flounder (Pleuronectes americamus). It had strong antimicrobial activities against Gram-positive and Gram-negative bacteria, but had very weak hemolytic activity. The Gly$^{13,17}\rightarrow$Ala analog (pleurocidin-AA) showed similar antibacterial activities, but had dramatically increased hemolytic activity. The bacterial cell selectivity of pleurocidin was confirmed through the membrane-disrupting and membrane-binding affinities using dye leakage, tryptophan fluorescence blue shift, and tryptophan quenching experiments. However, the non-cell-selective antimicrobial peptide, pleurocidin-AA, interacts strongly with both negatively charged and zwitterionic phospholipid membranes, the latter of which are the major constituents of the outer leaflet of erythrocytes. Circular dihroism spectra showed that pleurocidin-AA has much higher contents of $\alpha$-helical conformation than pleurocidin. The tertiary structure determined by NMR spectroscopy showed that pleurocidin has a flexible. structure between the long helix from $Gly^3$ to $Gly^{17}$ and the short helix from $Gly^{17}$ to $Leu^{25}$. Cell-selective antimicrobial peptide pleurocidin interacts strongly with negatively charged phospholipid membranes, which mimic bacterial membranes. Structural flexibility between the two helices may play a key role in bacterial cell selectivity of pleurocidin.

Enhanced Expression and Functional Characterization of the Recombinant Putative Lysozyme-PMAP36 Fusion Protein

  • Rao, Zhili;Kim, So Young;Akanda, Md Rashedunnabi;Lee, Su Jin;Jung, In Duk;Park, Byung-Yong;Kamala-Kannan, Seralathan;Hur, Jin;Park, Jung Hee
    • Molecules and Cells
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    • 제42권3호
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    • pp.262-269
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    • 2019
  • The porcine myeloid antimicrobial peptide (PMAP), one of the cathelicidin family members, contains small cationic peptides with amphipathic properties. We used a putative lysozyme originated from the bacteriophage P22 (P22 lysozyme) as a fusion partner, which was connected to the N-terminus of the PMAP36 peptide, to markedly increase the expression levels of recombinant PMAP36. The PMAP36-P22 lysozyme fusion protein with high solubility was produced in Escherichia coli. The final purified yield was approximately 1.8 mg/L. The purified PMAP36-P22 lysozyme fusion protein exhibited antimicrobial activity against both Gram-negative and Grampositive bacteria (Staphylococcus aureus, Salmonella enterica serovar Typhimurium, Pseudomonas aeruginosa, and Bacillus subtilis). Furthermore, we estimated its hemolytic activity against pig erythrocytes as 6% at the high concentration ($128{\mu}M$) of the PMAP36-P22 lysozyme fusion protein. Compared with the PMAP36 peptide (12%), our fusion protein exhibited half of the hemolytic activity. Overall, our recombinant PMAP36-P22 lysozyme fusion protein sustained the antimicrobial activity with the lower hemolytic activity associated with the synthetic PMAP36 peptide. This study suggests that the PMAP36-P22 lysozyme fusion system could be a crucial addition to the plethora of novel antimicrobials.

Anti-Inflammatory Activity of Antimicrobial Peptide Allomyrinasin Derived from the Dynastid Beetle, Allomyrina dichotoma

  • Lee, Joon Ha;Seo, Minchul;Lee, Hwa Jeong;Baek, Minhee;Kim, In-Woo;Kim, Sun Young;Kim, Mi-Ae;Kim, Seong Hyun;Hwang, Jae Sam
    • Journal of Microbiology and Biotechnology
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    • 제29권5호
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    • pp.687-695
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    • 2019
  • In a previous work, we performed de novo RNA sequencing of Allomyrina dichotoma using next generation sequencing and identified several antimicrobial peptide candidates based on transcriptome analysis. Among them, a cationic antimicrobial peptide, allomyrinasin, was selected bioinformatically based on its physicochemical properties. Here, we assessed the antimicrobial and anti-inflammatory activities of allomyrinasin against microorganisms and mouse macrophage Raw264.7 cells. Allomyrinasin showed antimicrobial activities against various microbes and decreased the nitric oxide production of the lipopolysaccharide-induced Raw264.7 cells. Furthermore, quantitative RT-PCR and ELISA revealed that allomyrinasin reduced cytokine expression levels in the Raw264.7 cells. We also identified inducible nitric oxide synthase, cyclooxygenase-2 expression, and $PGE_2$ production through western blot analysis and ELISA. We confirmed that allomyrinasin bound to bacterial cell membranes via a specific interaction with lipopolysaccharides. Taken together, these data indicate that allomyrinasin has antimicrobial and anti-inflammatory activities as exemplified in lipopolysaccharide-induced Raw264.7 cells. We have provided a potentially useful antimicrobial peptide candidate that has both antimicrobial and anti-inflammatory activities.

저분자량 수용성 키토산을 이용한 동맥 벽 표적성 유전자 전달체의 합성 (The Synthesis of Artery Wall Targeted Gene Carrier Using Low Molecular Water-Soluble Chitosan)

  • 최창용;장미경;나재운
    • 폴리머
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    • 제30권4호
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    • pp.279-285
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    • 2006
  • 유전자 치료에 있어서 안전성의 장점을 지니고 있는 비바이러스성 전달체에 대한 관심도가 높아져가고 있다. 비바이러스성 전달체 중, 양이온성 리포좀이나 합성 유전자 전달체는 in vitro계에서 효율적인 DNA 전달체이지만, 낮은 생체적합성으로 인하여 in vivo 계에서의 응용성은 크게 뒤떨어지고 있다. 한편, 천연 양이온성 다당류인 키토산은 낮은 독성과 강한 양전하를 띠고 있어 유전자 전달 시스템 (gene delivery system)에 있어 아주 기대되는 전달체이다. 본 연구에서는 저분자량 수용성 키토산 (low molecular water-soluble chitosan ; LMWSC)을 이용하여 동맥 벽 세포를 표적할 수 있는 표적성 유전자 전달체를 합성하였다. 상대 점도와 Kina 적정법을 이용하여 LMWSC의 점도 평균 분자량 $(M_W)$과 탈아세틸화도 (degree of de acetylation ; DDA)를 측정하였고 구조는 FTIR, $^1H-NMR$, 그리고 $^{13}C-NMR$을 통하여 분석하였다. 동맥 벽을 표적하기 위한 유전자 전달체로서 pegylated LMWSC 의 말단에 특이성 세포 표적 펩타이드인 artery wall binding peptide (AWBP)를 결합시킴으로써 AWBP-PEG-g-LMWSC을 합성하였고 FTIR, $^1H-NMR$. zeta potentiometer. 그리고 atomic force microscopy (AFM)을 이용하여 분석하였다.