• 제목/요약/키워드: N-glycoprotein

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표고버섯에서 분리한 렉틴의 적혈구 응집활성 (Hemagglutinative Activity of Lectin Isolated from Shiitake, Lentinula edodes)

  • 김영신;임치환;조남석
    • 한국균학회지
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    • 제30권1호
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    • pp.31-36
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    • 2002
  • 렉틴은 T-cell 자극 분열효과 및 항종양효과 이외에도 당특이성에 의한 세포표면이나 용액내에 존재하는 당류의 확인 및 연구에 유용하게 쓰이고 있어 최근들어 특히 흥미의 대상이 되고 있다. 렉틴은 주로 식물을 대상으로 연구되어져 왔으며, 이러한 연구결과, 렉틴은 단백질성 물질이라는 공통점을 제외하고는 생화학적, 면역학적 성질이 매우 다양한 것으로 나타났다. 본 연구에서는 표고버섯을 부위별로 구분하여 그 화학적 조성분석과 단백질 분리를 실시하고, 렉틴을 정제하여 생리활성의 특성을 구명하였다. 표고버섯은 신선한 것일수록 단백질 추출이 용이하며, 균산이 균병에 비해 단백질 량이 2배 정도 많았다. 렉틴은 $40^{\circ}C$ 이하에서 그리고 산성보다는 알칼리성에 더 안정하였다. 당 특이성에 있어서는 galactose, fucose, glucosamine, lactose, N-aretyl-D-galactosamine에 특이성을 지니는 것으로 나타났으며, 분리한 렉틴은 당단백질임을 알 수 있었다.

2014년 제주도 양식 넙치, Paralichthys olivaceus에 대한 VHS 및 RSIVD 모니터링 (Monitoring of VHS and RSIVD in cultured Paralichthys olivaceus of Jeju in 2014)

  • 박현경;김승민;이다원;전려진;정준범
    • 수산해양교육연구
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    • 제27권3호
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    • pp.879-889
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    • 2015
  • The outbreak of viral diseases caused by viral haemorrhagic septicaemia virus (VHSV) and red seabream iridovirus (RSIV) have been reported in cultured olive flounder, Paralichthys olivaceus. VHSV has been a serious viral disease that infects the olive flounders in South Korea. Clinical signs of VHSV infection are skin darkening, abdominal distension and haemorrhages. Outbreaks of fish iridoviral disease was first reported from red seabream, Pagrus major farms in Japan. Recently, iridovirus infection have occurred frequently from olive flounder farms in South Korea. In this study, disease surveillance was performed to monitor the prevalence of VHSV and RSIV in olive flounder in 2014. The samples were collected from 60 different olive flounder farms in Jeju from April, May, September, November and December in 2014. RT-PCR (VHSV) or PCR (RSIV) results showed that VHSV were detected in 5 farms, but RSIV has not been detected in any farms. The migration of olive flounder was restricted for the quarantine in 5 farms of VHS outbreak. The nucleocapsid protein (N) gene and glycoprotein (G) gene sequences of the 5 Korean VHSV isolates were successfully amplified and sequenced. Phylogenetic analysis was performed using the VHSV sequences reported here together comparison with the nucleotide sequences available from the GenBank database. Phylogenetic analysis indicated that most of Korea VHSV belong to the genotype IVa and closely related to the strains from Japan and China.

Molecular Prevalence and Genotypes of Cryptosporidium parvum and Giardia duodenalis in Patients with Acute Diarrhea in Korea, 2013-2016

  • Ma, Da-Won;Lee, Myoung-Ro;Hong, Sung-Hee;Cho, Shin-Hyeong;Lee, Sang-Eun
    • Parasites, Hosts and Diseases
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    • 제57권5호
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    • pp.531-536
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    • 2019
  • Cryptosporidium parvum and Giardia duodenalis are the main diarrhea-causing parasitic pathogens; however, their prevalence in Korea is unknown. Here, we conducted a survey to determine the prevalence and genotype distribution of these 2 pathogens causing acute diarrhea in 8,571 patients hospitalized in 17 Regional Institute of Health Environment sites in Korea, during 2013-2016. C. parvum and G. duodenalis were detected and genotyped by nested PCR, and the isolate were molecularly characterized by sequencing the glycoprotein 60 (Gp60) and ${\beta}-giardin$ genes, respectively. The overall prevalence of C. parvum and G. duodenalis was 0.37% (n=32) and 0.55% (n=47), respectively, and both pathogens were more prevalent in children under 9 years old. Molecular epidemiological analysis showed that the C. parvum isolates belonged to the IIa family and were subtyped as IIaA13G2R1, IIaA14G2R1, IIaA15G2R1, and IIaA18G3R1. Analysis of the ${\beta}-giardin$ gene fragment from G. duodenalis showed that all positive strains belong to assemblage A. This is the first report on the molecular epidemiology and subtyping of C. parvum and G. duodenalis in such a large number of diarrheal patients in Korea. These results highlight the need for continuous monitoring of these zoonotic pathogens and provide a basis for implementing control and prevention strategies. Further, the results might be useful for epidemiological investigation of the source of outbreak.

FMOC 표식에 의한 Sugar Chain의 분석 (Application of FMOC-Cl for the Quantitative Determination of N-linked Oligosaccharides)

  • 김동현;황보식;정구용
    • 한국식품과학회지
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    • 제29권4호
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    • pp.630-634
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    • 1997
  • N-glycanase처리에 의해 얻어진 1-amino-oligosaccharide를 FMOC-Cl로 표식 하는 방법을 확립하였다. 이 방법에 의해 얻어진 FMOC-표식 oligosaccharides는 기존의 방법보다 약 4배의 감도를 나타내었다. Amido 80 column을 사용한 분석에 의하여, Man 5-9 GlcNAc 2 amines의 5개의 성분은 각각 분리되어 용출 되었으며, 회수율은 기존의 방법과 거의 같았다. 1-amino-oligosaccharides는 0.05 pmol에서 1.5 pmol 사이에서 직선적인 관계를 나타내었으며, 2-aminopyridine에 의한 표식과 비교하였을 때, 안정된 화합물을 형성하고 있으며, 감도가 높아 미량의 oligosaccharides의 분석에 매우 적합한 것이 확인되었다.

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Conformational Analysis of Trimannoside and Bisected Trimannoside Using Aqueous Molecular Dynamics Simulations

  • Kim, Hyun-Myung;Choi, Young-Jin;Lee, Jong-Hyun;Jeong, Karp-Joo;Jung, Seun-Ho
    • Bulletin of the Korean Chemical Society
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    • 제30권11호
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    • pp.2723-2728
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    • 2009
  • The conformational properties of oligosaccharides are important to understand carbohydrate-protein interactions. A trimannoside, methyl 3,6-di-O-($\alpha$-D-Man)-$\alpha$-D-Man (TRIMAN) is a basic unit of N-linked oligosaccharides. This TRIMAN moiety was further modified by GlcNAc (BISECT), which is important to biological activity of N-glycan. To characterize the trimannoside and its bisecting one we performed a molecular dynamics simulation in water. The resulting models show the conformational transition with two major and minor conformations. The major conformational transition results from the $\omega$ angle transition; another minor transition is due to the $\psi$ angle transition of $\alpha$ (1 $\rightarrow$ 6) linkage. The introduction of bisecting GlcNAc on TRIMAN made the different population of the major and minor conformations of the TRIMAN moiety. Omega ($\omega$) angle distribution is largely changed and the population of gt conformation is increased in BISECT oligosaccharide. The inter-residue hydrogen bonds and water bridges via bisecting GlcNAc residue make alterations on the local and overall conformation of TRIMAN moiety. These changes of conformational distribution for TRIMAN moiety can affect the overall conformation of N-glycan and the biological activity of glycoprotein.

공통의 1차 구조를 가진 우유 지방구막 구성단백질의 당쇄 구조에 관한 생화학적 연구 (Biochemical Studies on the Sugar Chain Structure of Glycoproteins with the Same Protein Core of Bovine Milk Fat Globule Membrane)

  • 석진석
    • Journal of Dairy Science and Biotechnology
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    • 제21권2호
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    • pp.138-147
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    • 2003
  • We here analyzed and proposed the structures of the N-linked sugar chains of PAS-7 from bovine milk fat globule membrane. The N-linked sugar chains were liberated from PAS-7 by hydrazinolysis and, after modifying the reducing ends with 2-aminopyridine (PA), were separated into one neutral (7N,55%) and two acidic (7M mono-, 43%; 7D, di-, 2%) sugar chain roups. The latter were converted into neutral groups (7MN and 7DN) by sialidase digestion. The structure of each of these PA-neutral sugar chains was determined by sugar analysis, sequential exoglycosidase digestion, partial acetolysis, and 1H-NMR spectroscopy. The results show that the 10 sugar chains were of the biantennary complex type with and without fucose. The structure of 7N2A one of the major sugar chains, was proposed as; [structure: see text] A structural comparison between PAS-6 and -7 indicated that although they shared the same protein core, their sugar moiety was markedly different, involving the existence of a different pathway during the post-transcriptional modification.

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양식산 넙치로부터 HRV-like Rhabdovirus의 분리 (A New Rhabdovirus (HRV-like) Isolated in Korea from Cultured Japanese Flounder Paralichthys olivaceus)

  • 오명주;최태진
    • 한국어병학회지
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    • 제11권2호
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    • pp.129-136
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    • 1998
  • 1997년 3월 전라남도 및 경상남도의 해산어 육상 및 가두리 양식장에서 양성 중이던 넙치가 HRV(hirame rhabdovirus, Rhabdovirus olivaceus) 감염증과 유사한 증상을 나타내어 그 원인을 조사한 결과 새로운 rhabdovirus가 분리 되었다. 분리 바이러스(DF-9708)는 RTG-2 및 EPC 세포주에서 $15^{\circ}C$로 배양하였을 때 랩도바이러스 특유의 세포변성효과(CPE)를 나타내었으나 CHSE-214에서는 증식되지 않았다. 투과전자현미경으로 감염 세포내의 바이러스 입자 형태를 관찰해본 결과 bullet-shape의 크기 $70nm{\times}100\sim150nm$으로 인벨롭을 가진 바이러스였다. 분리바이러스는 pH 3 및 diethyl ether의 처리 조건에서는 감염성을 상실하였고, 열($50^{\circ}C$ 5 min, $60^{\circ}C$ 1 min)에도 약한 성상을 나타내었다. DNA 저해제인 IUdR $10^{-4}$M 처리에 의해서는 바이러스 감염가에 영향을 받지 않았다. 분리 바이러스는 Anti-HRV(8401-H) rabbit serum에 의해서만 중화 되었고, 전염성 조혈기 괴사증 바이러스(IHNV), 연어과 레오바이러스(CSV), 바이러스성 선회병 바이러스(RVS) 및 전염성 췌장괴사증 바이러스(IPNV) 등의 국내에서 분리되어지는 바이러스 항체로는 중화되지 않았다. 초원심법으로 정제한 분리 바이러스를 전기영동 한 결과 polymerase(L), glycoprotein(G), nucleoprotein(N) 및 2개의 matrix proteins(M1 및 M2)으로 구성되어져 있었으며, 각 단백질의 분자량은 L, 160 kDa; G, 55 kDa; N, 45 kDa; M1, 26 kDa; M2, 22 kDa의 크기로 계산되었다. 새롭게 분리된 바이러스는 외부증상으로는 기존의 HRV 감염과 유사한 점을 나타내었으나 그 바이러스학적 특성에 있어 약간의 차이점이 있어 본 분리바이러스를 우선 Nubchi rhabdovirus(NRV)(HRV-like)로 부르기로 한다.

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Defining the N-Linked Glycosylation Site of Hantaan Virus Envelope Glycoproteins Essential for Cell Fusion

  • Zheng, Feng;Ma, Lixian;Shao, Lihua;Wang, Gang;Chen, Fengzhe;Zhang, Ying;Yang, Song
    • Journal of Microbiology
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    • 제45권1호
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    • pp.41-47
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    • 2007
  • The Hantaan virus (HTNV) is an enveloped virus that is capable of inducing low pH-dependent cell fusion. We molecularly cloned the viral glycoprotein (GP) and nucleocapsid (NP) cDNA of HTNV and expressed them in Vero E6 cells under the control of a CMV promoter. The viral gene expression was assessed using an indirect immunofluorescence assay and immunoprecipitation. The transfected Vero E6 cells expressing GPs, but not those expressing NP, fused and formed a syncytium following exposure to a low pH. Monoclonal antibodies (MAbs) against envelope GPs inhibited cell fusion, whereas MAbs against NP did not. We also investigated the N-linked glycosylation of HTNV GPs and its role in cell fusion. The envelope GPs of HTNV are modified by N-linked glycosylation at five sites: four sites on G1 (N134, N235, N347, and N399) and one site on G2 (N928). Site-directed mutagenesis was used to construct eight GP gene mutants, including five single N-glycosylation site mutants and three double-site mutants, which were then expressed in Vero E6 cells. The oligosaccharide chain on residue N928 of G2 was found to be crucial for cell fusion after exposure to a low pH. These results suggest that G2 is likely to be the fusion protein of HTNV.

Expression level and glycan dynamics determine the net effects of TIMP-1 on cancer progression

  • Kim, Yong-Sam;Kim, Sun-Hee;Kang, Jeong-Gu;Ko, Jeong-Heon
    • BMB Reports
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    • 제45권11호
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    • pp.623-628
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    • 2012
  • Tissue inhibitor of metalloproteinases (TIMPs; TIMP-1, -2, -3 and -4) are endogenous inhibitor for matrix metalloproteinases (MMPs) that are responsible for remodeling the extracellular matrix (ECM) and involved in migration, invasion and metastasis of tumor cells. Unlike under normal conditions, the imbalance between MMPs and TIMPs is associated with various diseased states. Among TIMPs, TIMP-1, a 184-residue protein, is the only N-linked glycoprotein with glycosylation sites at N30 and N78. The structural analysis of the catalytic domain of human stromelysin-1 (MMP-3) and human TIMP-1 suggests new possibilities of the role of TIMP-1 glycan moieties as a tuner for the proteolytic activities by MMPs. Because the TIMP-1 glycosylation participate in the interaction, aberrant glycosylation of TIMP-1 presumably affects the interaction, thereby leading to pathogenic dysfunction in cancer cells. TIMP-1 has not only the cell proliferation activities but also anti-oncogenic properties. Cancer cells appear to utilize these bilateral aspects of TIMP-1 for cancer progression; an elevated TIMP-1 level exerts to cancer development via MMP-independent pathway during the early phase of tumor formation, whereas it is the aberrant glycosylation of TIMP-1 that overcome the high anti-proteolytic burden. The aberrant glycosylation of TIMP-1 can thus be used as staging and/or prognostic biomarker in colon cancer.

Enzymatic in vitro glycosylation using peptide-N-glycosidase F

  • 이지연;박태현
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2000년도 추계학술발표대회 및 bio-venture fair
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    • pp.721-724
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    • 2000
  • 재조합 단백질 생산에서 문제가 되고 있는 번역 후 과정인 glycosylation 을 in vitro 상에서 수행하였다. 원핵생물 시스템에서 재조합 단백질을 생산하고, 이후 효소를 이용하여 올리고당을 붙여 원래의 당단백질과 유사한 단백질을 생산하는 것이 산업적으로 경쟁력을 가질 수 있으므로 이를 위하여 glucose oxidase와 fetuin을 모델 당단백질로, 가수분해 효소인 peptide-N-glycosidase F 의 역반응 활성을 이용하여 glycosylation 을 시도하였다. 역가수분해로의 평형 이동을 위하여 그 기질인 올리고당과 암모니아를 과량 첨가하고, 반응 온도를 높였다. Glucose oxidase의 경우에는 denaturation 했을 때 완전한 deglycosylation 이 일어났지만, fetuin의 경우에는 그렇지 못했다. Glucose oxidase 의 glycosylation 은 수용액상에서는 불가능 했지만 acetone 을 media로 사용하여 $50^{\circ}C$에서 4 시간동안 반응시켰을 때 SDS-PAGE 분석 결과 reglycosylation이 일어나 단백질 밴드가 위로 올라감을 관찰할 수 있었다.

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