• Title/Summary/Keyword: DNA Binding Peptide

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Structural and Functional Insight into Proliferating Cell Nuclear Antigen

  • Park, So Young;Jeong, Mi Suk;Han, Chang Woo;Yu, Hak Sun;Jang, Se Bok
    • Journal of Microbiology and Biotechnology
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    • 제26권4호
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    • pp.637-647
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    • 2016
  • Proliferating cell nuclear antigen (PCNA) is a critical eukaryotic replication accessory factor that supports DNA binding in DNA processing, such as DNA replication, repair, and recombination. PCNA consists of three toroidal-shaped monomers that encircle double-stranded DNA. The diverse functions of PCNA may be regulated by its interactions with partner proteins. Many of the PCNA partner proteins generally have a conserved PCNA-interacting peptide (PIP) motif, located at the N- or C- terminal region. The PIP motif forms a 310 helix that enters into the hydrophobic groove produced by an interdomain-connecting loop, a central loop, and a C-terminal tail in the PCNA. Post-translational modification of PCNA also plays a critical role in regulation of its function and binding partner proteins. Structural and biochemical studies of PCNA-protein will be useful in designing therapeutic agents, as well as estimating the outcome of anticancer drug development. This review summarizes the characterization of eukaryotic PCNA in relation to the protein structures, functions, and modifications, and interaction with proteins.

Ribosome Display를 이용한 항체선별 방법의 확립 (Establishement of Antibody Selection by Ribosome Display)

  • 이명신;권명희;김경민;박선;신호준;김형일
    • IMMUNE NETWORK
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    • 제3권3호
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    • pp.219-226
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    • 2003
  • Background: Phage display is the most widely used technique among display methods to produce monoclonal antibody fragment with a specific binding activity. Having a large library for efficient antibody display/selection is quite laborious process to have more than $10^9$ members of transformants. To overcome these limitations, several in vitro selection approaches have been reported. Ribosome display that links phenotypes, proteins, directly to genotype, mRNA, is one of the in vitro display methods. Ribosome display can reach the size of scFv library up to $10^{14}$ molecules and it can be further diversified during PCR steps. To select the high affinity scFv from one pot library, we established ribosome display technique by modifying the previously reported eukaryotic translation system. Methods: To establish the antibody selection system by ribosome display, we used 3D8, anti-DNA antibody. A 3D8 scFv was synthesized in vitro by an in vitro transcription-translation system. The translated 3D8 scFv and the encoding 3D8 mRNA are connected to the ribosome. These scFv-ribosome-mRNA complexes were selected by binding to their specific antigens. The eluted mRNAs from the complexes are reverse transcribed and re-amplified by PCR. To apply this system, antibody library from immunized mouse with terminal protein (TP)-peptide of hepatitis B virus DNA polymerase TP domain was also used. This TP-peptide encompasses the 57~80 amino acid residues of TP. These mRNA/ribosome/scFv complexes by our system were panned three times against TP-peptide. The enrichment of antibody from library was determined by radioimmunoassay. Results: We specifically selected 3D8, anti-DNA antibody, against ssDNA as a model system. The selected 3D8 RNAs sequences from translation complexes were recovered by RT-PCR. By applying this model system, we enriched TP-peptide-specific scFv pools through three cycles of panning from immunized library. Conclusion: We show that our translating ribosome complexes are well maintained and we can enrich the TP-specific scFv pools. This system can be applied to select specific antibody from an antibody library.

Interaction of a 22 kDa Peptidyl Prolyl cis/trans Isomerase with the Heat Shock Protein DnaK in Vibrio anguillarum

  • Kang, Dong Seop;Moon, Soo Young;Cho, Hwa Jin;Lee, Jong Min;Kong, In-Soo
    • Journal of Microbiology and Biotechnology
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    • 제27권3호
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    • pp.644-647
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    • 2017
  • Peptidyl prolyl cis/trans isomerases (PPIases) catalyze the cis/trans isomerization of peptidyl-prolyl peptide bonds preceding prolines. We investigated the protein-protein interaction between a 22 kDa PPIase (VaFKBP22, an FK506-binding protein) and the molecular chaperone DnaK derived from Vibrio anguillarum O1 (VaDnaK) using GST pull-down assays and a bacterial two-hybrid system for in vivo and in vitro studies, respectively. Furthermore, we analyzed the three-dimensional structure of the protein-protein interaction. Based on our results, VaFKBP22 appears to act as a cochaperone of VaDnaK, and contributes to protein folding and stabilization via its peptidyl-prolyl cis/trans isomerization activity.

A Conserved Mechanism for Binding of p53 DNA-Binding Domain and Anti-Apoptotic Bcl-2 Family Proteins

  • Lee, Dong-Hwa;Ha, Ji-Hyang;Kim, Yul;Jang, Mi;Park, Sung Jean;Yoon, Ho Sup;Kim, Eun-Hee;Bae, Kwang-Hee;Park, Byoung Chul;Park, Sung Goo;Yi, Gwan-Su;Chi, Seung-Wook
    • Molecules and Cells
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    • 제37권3호
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    • pp.264-269
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    • 2014
  • The molecular interaction between tumor suppressor p53 and the anti-apoptotic Bcl-2 family proteins plays an essential role in the transcription-independent apoptotic pathway of p53. In this study, we investigated the binding of p53 DNA-binding domain (p53DBD) with the anti-apoptotic Bcl-2 family proteins, Bcl-w, Mcl-1, and Bcl-2, using GST pull-down assay and NMR spectroscopy. The GST pull-down assays and NMR experiments demonstrated the direct binding of the p53DBD with Bcl-w, Mcl-1, and Bcl-2. Further, NMR chemical shift perturbation data showed that Bcl-w and Mcl-1 bind to the positively charged DNA-binding surface of p53DBD. Noticeably, the refined structural models of the complexes between p53DBD and Bcl-w, Mcl-1, and Bcl-2 showed that the binding mode of p53DBD is highly conserved among the anti-apoptotic Bcl-2 family proteins. Furthermore, the chemical shift perturbations on Bcl-w, Mcl-1, and Bcl-2 induced by p53DBD binding occurred not only at the p53DBD-binding acidic region but also at the BH3 peptide-binding pocket, which suggests an allosteric conformational change similar to that observed in Bcl-$X_L$. Taken altogether, our results revealed a structural basis for a conserved binding mechanism between p53DBD and the anti-apoptotic Bcl-2 family proteins, which shed light on to the molecular understanding of the transcription-independent apoptosis pathway of p53.

Identification of Ku70/Ku80 as ADD1/SREBP1c Interacting Proteins

  • Lee, Yun Sok;Koh, Hae-Young;Park, Sang Dai;Kim, Jae Bum
    • Animal cells and systems
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    • 제8권1호
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    • pp.49-55
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    • 2004
  • In vertebrates, multisubunit cofactors regulate gene expression through interacting with cell-type- and gene-specific DNA-binding proteins in a chromatin-selective manner. ADD1/SREBP1c regulates fatty acid metabolism and insulin-dependent gene expression through binding to SRE and E-box motif with dual DNA binding specificity. Although its transcriptional and post-translational regulation has been extensively studied, its regulation by interacting proteins is not well understood. To identify cellular proteins that associate with nuclear form of ADD1/SEBP1c, we employed the GST pull-down system with Hela cell nuclei extract. In this study, we demonstrated that Ku proteins interact specifically with ADD1/SREP1c protein. GST pull-down combined with peptide sequencing analysis revealed that Ku80 binds to ADD1/SREBP1c in vitro. Additionally, western blot analysis showed that Ku70, a heterodimerizing partner of Ku80, also associates with ADD1/SREBP1c. Furthermore, co-transfection of Ku70/Ku80 with ADD1/SREBP1c enhanced the transcriptional activity of ADD1/SREBP1c. Taken together, these results suggest that the Ku proteins might be involved in the lipogenic and/or adipogenic gene expression through interacting with ADD1/SREBP1c.

미생물에서 돼지 150-kDa Insulin-Like Growth Factor Complex의 Acid-Labile Subunit 발현 (Procaryotic Expression of Porcine Acid-Labile Subunit of the 150-kDa Insulin-like Growth Factor Complex)

  • 이철영;강혜경;문양수
    • Journal of Animal Science and Technology
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    • 제50권2호
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    • pp.177-184
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    • 2008
  • Acid-labile subunit(ALS)는 85-kDa 크기의 당단백질로서 7.5-kDa의 insulin-like growth factor(IGF) 및 40~45-kDa IGF-binding protein-3와 결합하여 150-kDa ternary complex를 형성하는 혈장단백질이다. 선행연구에서 본 연구진은 reverse transcription-polymerase chain reaction(RT-PCR) 방법으로 돼지(porcine) ALS(pALS)의 coding sequence를 합성하여 plasmid vector에 삽입시켜 ‘expression construct’를 제작한 바 있다. 그러나 본 expression construct의 pALS coding sequence에는 PCR error로 추정되는 원인으로 말미암아 2개의 bases에서 mis-sense mutation이 일어난 것이 발견되었다. 본 연구에서는 ‘site-directed mutagenesis’ 방법으로 pALS의 올바른 coding sequence를 합성하여 ‘insert DNA’의 마지막 codon 다음에 ‘His-tag’ sequence가 위치한 pET- 28a(+) plasmid expression vector에 삽입하였다. 본 expression construct는 E. coli BL21(DE3) 세포에서 ‘induction’ 시켰고, 발현된 유전자재조합(recombinant) peptide는 Ni-affinity chromato- graphy로 정제하였다. 이렇게 affinity chro- matography로 정제된 peptide는 SDS-PAGE에서 66kDa 위치에 single band를 나타냄으로써 recombinant pALS의 예상된 질량과 일치하였다. 이상의 결과는 본 연구에서 recombinant pALS peptide가 성공적으로 발현정제되었음을 시사한다.

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.

Antiviral Efficacy of a Short PNA Targeting microRNA-122 Using Galactosylated Cationic Liposome as a Carrier for the Delivery of the PNA-DNA Hybrid to Hepatocytes

  • Kim, Hyoseon;Lee, Kwang Hyun;Kim, Kyung Bo;Park, Yong Serk;Kim, Keun-Sik;Kim, Dong-Eun
    • Bulletin of the Korean Chemical Society
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    • 제34권3호
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    • pp.735-742
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    • 2013
  • Peptide nucleic acids (PNAs) that bind to complementary nucleic acid sequences with extraordinarily high affinity and sequence specificity can be used as antisense oligonucleotides against microRNAs, namely antagomir PNAs. However, methods for efficient cellular delivery must be developed for effective use of PNAs as therapeutic agents. Here, we demonstrate that antagomir PNAs can be delivered to hepatic cells by complementary DNA oligonucleotide and cationic liposomes containing galactosylated ceramide and a novel cationic lipid, DMKE (O,O'-dimyristyl-N-lysyl glutamate), through glycoprotein-mediated endocytosis. An antagomir PNA was designed to target miR-122, which is required for translation of the hepatitis C virus (HCV) genome in hepatocytes, and was hybridized to a DNA oligonucleotide for complexation with cationic liposome. The PNA-DNA hybrid molecules were efficiently internalized into hepatic cells by complexing with the galactosylated cationic liposome in vitro. Galactosylation of liposome significantly enhanced both lipoplex cell binding and PNA delivery to the hepatic cells. After 4-h incubation with galactosylated lipoplexes, PNAs were efficiently delivered into hepatic cells and HCV genome translation was suppressed more than 70% through sequestration of miR-122 in cytoplasm. PNAs were readily released from the PNA-DNA hybrid in the low pH environment of the endosome. The present study indicates that transfection of PNA-DNA hybrid molecules using galactosylated cationic liposomes can be used as an efficient non-viral carrier for antagomir PNAs targeted to hepatocytes.

돼지 신장의 Angiotensin I Converting Enzyme cDNA 클로닝 (Cloning of Pig Kidney cDNA Encoding an Angiotensin I Converting Enzyme)

  • 윤장호;윤주억;홍광원
    • Applied Biological Chemistry
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    • 제49권4호
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    • pp.293-297
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    • 2006
  • 포유류의 조직에 널리 분포되어 있으며 혈압 조절에 중요한 역할을 하는 Angiotensin-converting enzyme(ACE)은 아연을 함유하는 dipeptidase로서 angiotensin I을 가수분해하여 강력한 혈압상승제인 angiotensin II를 생성하는 효소이다. 최근에 돼지의 난소에서 ACE 활성이 측정되었으며, 돼지의 신장에서 ACE 단백질이 분리되어 그 특성이 알려졌다. 그러나 돼지의 어떠한 ACE DNA 염기서열도 아직까지 보고 된 바는 없다. 그러므로 본 연구에서 reverse transcriptase-polymerase chain reaction(RT-PCR)을 이용하여 돼지의 신장 ACE cDNA를 클로닝하고 그 염기서열을 분석하였다. ACE cDNA는 1309개의 아미노산으로 구성되어 있으며 그 분자량은 150kDa이다. 염기서열로부터 유추한 아미노산의 서열을 분석한 결과, N 말단의 33개 아미노산이 signal peptide 역할을 하는 것으로 보이며, C 말단 근처의 짧은 transmembrane 영역은 세포막에 anchor역할을 하는 것으로 보인다. 돼지 신장의 ACE에서 두 개의 매우 유사한 amino acid peptidase domain은 tandem duplication 되어 있으며, 각각의 domain은 다른 포유류의 체세포 ACE들과 마찬가지로 putative metal-binding site(His-Glu-Met-Gly-His)를 하나씩 가지고 있는 것으로 나타났다. 돼지 신장 ACE 서열과 인간, 토끼, 쥐 등과 같은 포유류의 ACE 아미노산 서열들과의 상동성 비교는 진화과정 중 두 domain이 매우 잘 보전되어 왔음을 보여주고 있다.

Activation of Toll-like receptor 9 and production of epitope specific antibody by liposome-encapsulated CpG-DNA

  • Kim, Dong-Bum;Kwon, Hyung-Joo;Lee, Young-Hee
    • BMB Reports
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    • 제44권9호
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    • pp.607-612
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    • 2011
  • Several investigators have shown that CpG-DNA has outstanding effects as a Th1-responsive adjuvant and that its potent adjuvant effects are enhanced by encapsulation with a liposome of proper composition. In this study, we showed that encapsulation with phosphatidyl-${\beta}$-oleoyl-${\gamma}$-palmitoyl ethanolamine (DOPE): cholesterol hemisuccinate (CHEMS) complex enhances the immunostimulatory activity of CpG DNA and the binding of CpG-DNA to TLR9. We also examined involvement of myeloid differentiation protein (MyD88) and NF-${\kappa}B$ activation in liposome-encapsulated CpG-DNA-induced IL-8 promoter activation. In this manuscript, the natural phosphodiester bond CpG-DNA encapsulated by DOPE : CHEMS complex is designated as Lipoplex(O). Importantly, we successfully screened B cell epitopes of envelope protein (E protein) of hepatitis C virus (HCV-E) and attachment glycoprotein G of human respiratory syncytial virus (HRSV-G) by immunization with complexes of several peptides and Lipoplex(O) without carriers. Therefore, Lipoplex(O) is potentially applicable as a universal adjuvant for peptide-based epitope screening and antibody production.