• Title/Summary/Keyword: Capsid

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Phylogenetic analysis and antigenic determinant prediction of red sea bream iridovirus isolated in Korea from 2019 to 2023 (2019년부터 2023년까지 국내에서 분리된 참돔이리도바이러스의 계통 분류 및 항원 결정기 예측)

  • Guk Hyun Kim;Joon Gyu Min;Hyun Do Jeong;Kwang Il Kim
    • Journal of fish pathology
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    • v.37 no.1
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    • pp.25-36
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    • 2024
  • In this study, we analyzed the phylogenetic classification, epitope prediction, and pathogenicity of red sea bream iridovirus (RSIV) isolated from rock bream between 2019 and 2023. Phylogenetics based on genes encoding MCP and ATPase indicated that all five RSIV isolates belonged to RSIV subtype II. The deduced amino acid sequence of the MCP for the amplicons (1362 bp) obtained from RSIV isolates had a length of 453 amino acids. Among these, the amino acid sequences of the RSIV-19, 21, 22, and 23 isolates showed 100% identity, while the RSIV-20 isolate showed 99.78% identity with one residue difference at position 306. As a result of antigenicity analysis based on amino acid sequence, the antigenicity score of the RSIV-20 isolate was 0.6386 and the other RSIV isolates were 0.6365. Additionally, the prediction of their antigenic determinants resulted in a total of 17 identical antigenic plots. When each RSIV was inoculated into rock bream, no significant differences were observed with 100% cumulative mortality in all groups. This study provides data on the potential for genetic variation of RSIV isolated in the same marine area over the past five years, and the antigenicity and pathogenicity results of each isolate are expected to be useful information for selecting future vaccine strains.

Production of the Polyclonal Antibody That Recognizes the Mutant M Protein of Japanese Encephalitis Virus: Role of Its Charged Residues in Virus Production (일본뇌염바이러스의 Mutant M 단백질에 반응하는 다클론항체의 생산: 극성 아미노산 잔기의 바이러스 생산과정에서의 역할)

  • Kim, Jeong-Min;Yun, Sang-Im;Song, Byung-Hak;Kim, Jin-Kyoung;Lee, Young-Min
    • Korean Journal of Microbiology
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    • v.46 no.2
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    • pp.140-147
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    • 2010
  • Japanese encephalitis virus (JEV), a member of the mosquito-borne flaviviruses, causes epidemics of viral encephalitis in the Southeastern Asia. JEV is a small enveloped virus with a positive-sense RNA genome; the infectious virion consists of three structural proteins, namely capsid, membrane (M; a mature form of its prM precursor), and envelope proteins. Here, we investigated a role of the charged residues found at the N-terminus of the JEV M protein in virus production. Using an infectious JEV cDNA, we generated two mutant cDNAs, Mm1 and Mm2, by charged-to-alanine substitution for $E^9$ and $K^{15}K^{16}E^{17}$ residues of the M protein, respectively. By transfection of wild-type or each of the two mutant RNAs transcribed from the corresponding cDNAs, we found that Mm2, but not Mm1, had a ~3-log decrease in virus production, even though a comparable amount of all three structural proteins were produced in transfected cells. Interestingly, the prM protein expressed in Mm2 RNA-transfected cells was not recognized by the polyclonal antiserum raised against the N-terminal 44 amino acids of the wild type M protein, but reacted to the antiserum raised against the corresponding region of the mutant Mm2. Our results indicate that three charged residues ($K^{15}K^{16}E^{17}$) in JEV M protein play a role in virus production. Two polyclonal antisera specifically recognizing the wild-type or Mm2 version of the M protein would provide a useful reagent for the functional study of this protein in the virus life cycle.

Hepatitis C Virus Core Protein Activates p53 to Inhibit E6-associated Protein Expression via Promoter Hypermethylation (C형 간염바이러스 코어 단백질에 의한 p53 활성화와 프로모터 과메틸화를 통한 E6AP 발현 억제)

  • Kwak, Juri;Jang, Kyung Lib
    • Journal of Life Science
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    • v.28 no.9
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    • pp.1007-1015
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    • 2018
  • The E6-associated protein (E6AP) is known to induce the ubiquitination and proteasomal degradation of HCV core protein and thereby directly impair capsid assembly, resulting in a decline in HCV replication. To counteract this anti-viral host defense system, HCV core protein has evolved a strategy to inhibit E6AP expression via DNA methylation. In the present study, we further explored the mechanism by which HCV core protein inhibits E6AP expression. HCV core protein upregulated both the protein levels and enzyme activities of DNA methyltransferase 1 (DNMT1), DNMT3a, and DNMT3b to inhibit E6AP expression via promoter hypermethylation in HepG2 cells but not in Hep3B cells, which do not express p53. Interestingly, p53 overexpression alone in Hep3B cells was sufficient to activate DNMTs in the absence of HCV core protein and thereby inhibit E6AP expression via promoter hypermethylation. In addition, upregulation of p53 was absolutely required for the HCV core protein to inhibit E6AP expression via promoter hypermethylation, as evidenced by both p53 knockdown and ectopic expression experiments. Accordingly, levels of the ubiquitinated forms of HCV core protein were lower in HepG2 cells than in Hep3B cells. Based on these observations, we conclude that HCV core protein evades ubiquitin-dependent proteasomal degradation in a p53-dependent manner.

Simultaneous Detection of Barley Virus Diseases in Korea (국내 맥류에 발생하는 바이러스병 동시진단 방법)

  • Lee, Bong-Choon;Bae, Ju-Young;Kim, Sang-Min;Ra, Ji-Eun;Choi, Nak Jung;Choi, Man Young;Park, Ki Do
    • Research in Plant Disease
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    • v.23 no.4
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    • pp.363-366
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    • 2017
  • Barley mild mosaic virus (BaMMV), Barley yellow mosaic virus (BaYMV) and Barley yellow dwarf virus (BYDV) have been identified as an important causative agents for an economically important disease of winter barley in Korea. In this study, a multiplex reverse transcription polymerase chain reaction (mRT-PCR) method was used for the simultaneous detection. Three sets of virus-specific primers targeted to the capsid protein coding genes of BaMMV, BaYMV and BYDV were used to amplify fragments that were 594 bp, 461 bp, and 290 bp, respectively. Several sets of primers for each target virus were evaluated for their sensitivity and specificity by multiplex RT-PCR. The optimum primer concentrations and RT-PCR conditions were determined for the multiplex RT-PCR. The mRT-PCR assay was found to be a better and rapid virus diagnostic tool of specific barley diseases and potential for investigating the epidemiology of these viral diseases.

Real-time Nucleic Acid Sequence Based Amplification (Real-time NASBA) for Detection of Norovirus

  • Lee, In-Soo;Choi, Dong-Hyuk;Lim, Jae-Won;Cho, Yoon-Jung;Jeong, Hye-Sook;Cheon, Doo-Sung;Bang, Hye-Eun;Jin, Hyun-Woo;Choi, Yeon-Im;Park, Sang-Jung;Kim, Sung-hyun;Lee, Hye-Young;Kim, Tae-Ue
    • Biomedical Science Letters
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    • v.17 no.3
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    • pp.191-196
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    • 2011
  • Noroviruses (noroV) are the major cause of nonbacterial gastroenteritis in humans worldwide. Since noroV cannot yet be cultured in vitro and their diagnosis by electron microscopy requires at least $10^6$ viral particles/g of stool a variety of molecular detection techniques represent an important step towards the detection of noroV. In the present study, we have applied real-time nucleic acid sequence-based amplification (real-time NASBA) for simultaneous detection of NoroV genogroup I (GI) and genogroup II (GII) using standard viral RNA. For real-time NASBA assay which can detected noroV GI and GII, a selective region of the genes encoding the capsid protein was used to design primers and genotype-specific molecular beacon probes. The specificity of the real-time NASBA using newly designed primers and probes were confirmed using standard viral RNA of noroV GI and GII. To determine the sensitivity of this assay, serial 10-fold dilutions of standard viral RNA of noroV GI and GII were used for reverse transcription polymerase chain reaction (RT-PCR) and real-time NASBA. The results showed that while agarose gel electrophoresis could detect RT-PCR products with 10 pg of standard viral RNA, the real-time NASBA assay could detect 100 fg of standard viral RNA. These results suggested that the real-time NASBA assay has much higher sensitivity than conventional RT-PCR assay. This assay was expected that might detect the viral RNA in the specimens which could have been false negative by RT-PCR. There were needed to perform real-time NASBA with clinical specimens for evaluating accurate sensitivity and specificity of this assay.

In Vitro Expression and Antibody Preparation of Rice black-streaked dwarf virus Coat Protein Gene (벼검은줄오갈병바이러스 외피단백질 유전자 단백질 발현과 항혈청 제작)

  • Lee, Bong Choon;Cho, Sang-Yun;Bae, Ju Young;Kim, Sang Min;Shin, Dong Bum;Kim, Sun Lim
    • Research in Plant Disease
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    • v.22 no.1
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    • pp.32-37
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    • 2016
  • In this work, major outer capsid protein (P10) encoded by genome segment S10 of Rice black-streaked dwarf virus (RBSDV) was expressed in Escherichia coli. Genomic dsRNA was extracted from RBSDV-miryang isolate infected rice plants. Based on the sequence of S10 (RBSDV-miryang, GenBank JX994211), a pair of S10 specific primers were designed and used to amplify the fragment encoding the N-part of P10. We amplified the partial gene (S10 1-834 nt) of RBSDV P10 (1-278 aa) by RT-PCR. Amplified RBSDV S10 (1-834 nt) was cloned into the expression vector pET32a (+). Recombinant RBSDV S10 (1-834 nt) was expressed in E. coli BL21(DE3) and purified by nickel-nitrilotriacetic acid (Ni-NTA) affinity column. We successfully obtained P10 partial protein of RBSDV and the purified protein was used to immunize rabbits. The resulting polyclonal antiserum specifically recognized RBSDV from infected plant in both Western blotting and enzyme-linked immunosorbent assay. In this study, we provide purified RBSDV P10 (1-278 aa), which would be good material for the serological study of RBSDV-miryang isolates.

Hepatitis C Virus - Proteins, Diagnosis, Treatment and New Approaches for Vaccine Development

  • Keyvani, Hossein;Fazlalipour, Mehdi;Monavari, Seyed Hamid Reza;Mollaie, Hamid Reza
    • Asian Pacific Journal of Cancer Prevention
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    • v.13 no.12
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    • pp.5917-5935
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    • 2012
  • Background: Hepatitis C virus (HCV) causes acute and chronic human hepatitis infection and as such is an important global health problem. The virus was discovered in the USA in 1989 and it is now known that three to four million people are infected every year, WHO estimating that 3 percent of the 7 billion people worldwide being chronically infected. Humans are the natural hosts of HCV and this virus can eventually lead to permanent liver damage and carcinoma. HCV is a member of the Flaviviridae family and Hepacivirus genus. The diameter of the virus is about 50-60 nm and the virion contains a single-stranded positive RNA approximately 10,000 nucleotides in length and consisting of one ORF which is encapsulated by an external lipid envelope and icosahedral capsid. HCV is a heterogeneous virus, classified into 6 genotypes and more than 50 subtypes. Because of the genome variability, nucleotide sequences of genotypes differ by approximately 31-34%, and by 20-23% among subtypes. Quasi-species of mixed virus populations provide a survival advantage for the virus to create multiple variant genomes and a high rate of generation of variants to allow rapid selection of mutants for new environmental conditions. Direct contact with infected blood and blood products, sexual relationships and availability of injectable drugs have had remarkable effects on HCV epidemiology. Hundreds of thousands of people die each year from hepatitis and liver cancer caused by HCV virus infection. Approximately 80% of patients with acute hepatitis C progress into a chronic disease state leading to serious hepatic disorders, 10-20% of which develop chronic liver cirrhosis and hepatocellular carcinoma. The incubation period of HCV is 6-8 weeks and the infection is often asymptomatic so it is very hard to detect at early stages, making early treatment very difficult. Therefore, hepatitis C is called a "silent disease". Neutralizing antibodies are produced against several HCV proteins during infection but the virus mutates to escape from antibodies. Some patients with chronic hepatitis C may have some symptoms such as fatigue, muscle aches, nausea and pain. Autoimmune and immunecomplex-mediated diseases have also been reported with chronic HCV infection.

ABO Blood Group, Epstein-Barr virus Infection and Prognosis of Patients with Non-metastatic Nasopharyngeal Carcinoma

  • Zhang, Ya-Xiong;Kang, Shi-Yang;Chen, Gang;Fang, Wen-Feng;Wu, Xuan;You, Hua-Jing;He, Da-Cheng;Cao, Ya-Lin;Liang, Wen-Hua;Zhang, Li
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.17
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    • pp.7459-7465
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    • 2014
  • Background: A prior study showed blood type A/AB to be associated with an increased risk of nasopharyngeal carcinoma (NPC) compared to subjects with blood type O. However, the relationship between ABO blood groups and prognosis of NPC patients is still questionable. In addition, whether Epstein-Barr virus (EBV) infection is associated with prognosis of NPC patients with different ABO blood groups is unclear. Materials and Methods: We conducted univariate and multivariable Cox regression analyses based on a consecutive cohort of 1,601 patients to investigate the above issues. Results: There was no significant difference in overall survival (OS) between different ABO blood groups (p=0.629), neither between A vs. non-A blood groups (p=0.895) nor AB vs. non-AB blood group (p=0.309) in univariate analyses and after adjusting for other factors. Interaction tests revealed that high immunoglobulin A against Epstein-Barr virus viral capsid antigen (VcA-IgA) level was associated with a favorable prognosis in male patients with UICC stage II disease who had an A blood type (p=0.008), compared with those with non-A blood type. In addition, male patients with an A blood group with a high blood lymphocyte level showeda tendency towards better survival in UICC stage III (p=0.096). Conclusions: ABO blood group status is not associated with the prognosis of patients with NPC. Additionally, blood group A male NPC patients with high VcA-IgA level or high blood lymphocyte counts might be correlated with a favorable prognosis in UICC stage II or III, respectively.

Identification of the Oligotrophic Bacteria Strain 7F Biocontrolling Phytophthora Blight Disease of Red-pepper (고추 역병 방제를 위한 저영양 길항세균 7F 균주의 동정)

  • Kim, Dong-Gwan;Yeo, Yun-Soo;Kwon, Soon-Wo;Jang, Kil-Su;Lee, Chang-Muk;Lee, Mi-Hye;Kim, Soo-Jin;Koo, Bon-Sung;Yoon, Sang-Hong
    • Research in Plant Disease
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    • v.16 no.1
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    • pp.41-47
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    • 2010
  • A total of 10,753 oligotrophic bacteria were isolated from the cultivated soils of red-pepper infected by Phytophthora blight disease in various regions of Korea (Chungju, Anmyon, Taean, Andong, Eumsung and Goesan). Seven bacteria isolates among these collected resources were selected by the first screening of in vitro antagonistic assay against major several plant pathogenic fungi including Phytophthora capsici. Finally, strain 7F was selected by pot assay for a possible biological control agent against Phytophthora blight disease of pepper seedling in the greenhouse. Strain 7F was identified as Bacillus subtilis on the basis of its 16S rDNA sequence analysis and as standardized biochemical characteristics assay kits such as API20 NE. In the experiment of P. capsici zoospore infected red-pepper on the pot test, infection rate of red-pepper with nonetreatment to Phytophthora blight disease was 87%, while the rate was only 6% in the pot treated with strain 7F. This result indicated that the Bacillus subtilis strain 7F will be useful as a potential biocontrol agent for Phytophthora blight disease of red-pepper.

Typing and Sequence Analysis of the VP7 Gene of Rotavirus Isolated from Infants in Korea (한국영아에서 분리된 로타바이러스의 VP7 유전자형 및 염기서열 분석)

  • Song, Mi-Ok;Yun, Karyn;Chung, Sang-In;Choi, Chul-Soon;Lim, In-Seok;Kang, Shien-Young;An, Chang-Nam;Kim, Won-Yong
    • The Journal of Korean Society of Virology
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    • v.30 no.2
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    • pp.101-112
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    • 2000
  • Rotaviruses are the most common cause of severe vomiting and diarrhea in children worldwide and classified as a genus in the family Reoviridae. Rotavirus has eleven segmented dsRNAs and the virion consists of three shells. Outer capsid VP7 and VP4 induce neutralizing antibodies and are classified into G types (glycoprotein VP7) and P types (protease-sensitive VP4). Characterization of VP7 gene of Korean isolates of human rotavirus was performed using multiplex PCR and nucleotide sequence analysis. After RT-PCR amplification of full length (1,062 bp) of VP7 genes, the amplified PCR products were G typed by multiplex PCR and the nucleotide sequences were compared with those of reference rotavirus from GenBank. The G type analysis revealed that 25% (2/8) belong to G1, whereas 37.5% (3/8) benong to G2 and G4, respectively. The Korean isolates within the same serotypes showed high homology of nucleotide sequences and could be discriminated from foreign isolates exception with two strains (CAU009 and CAU022). But Korean isolates CAU009 and CAU022 were close related into japanease isolates 417 (99.2%) and indian isolates (97.6%) than Korean isolatese. Our results showed that these two strains were supposed to be originated from abroad. As a results, The G typing and nucleotide sequence analysis of VP7 gene of rotavirus isolated from infants in Korea could be used for identification, serotying and determination of novel or unusual strains of rotaviruses.

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