• Title/Summary/Keyword: RNA viruses

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Characterization of the Infectious Pancreatic Necrosis Virus (IPNV) isolated from Pan-Cultured Rainbow Trout in Korea (한국산 양식송어에서 분리된 전염성 췌장괴저 바이러스의 특성)

  • 박정우;이정진;정가진;하영칠
    • Korean Journal of Microbiology
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    • v.27 no.3
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    • pp.225-230
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    • 1989
  • Infectious Pancreatic Necrosis Virus (IPNV) is one of the most important pathogens for inland fish farming and had been first reported in Korea from returning adult chum salmon (Oncorhynchus keta) at hatcheries on the east coast. During the past years, several viruses identified as IPNV were isolated not only from chum salmon, but also from gold fish (Carassius auratus), eel(Anguilla japonica), and rainbow trout (Salmo gairdneri). An isolate, coded DRT, from fingerlings of pan-cultured rainbow trout in Daechung Dam showed different serotype from three known reference serogroups of IPNV such as VR-299, Sp, and Ab. Antisera to three of these serotypes, however, partially neutralized the infectivity of this isolate. Anti-Sp type was rather effective than either anti-VR-299 or anti-Ab, implying DRT could be more closely related to Sp. DRT has been purified and its RNA genome segments were compated showing that the isolate does not belong to any of known serogroups even with some common antigenicity.

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Bioinspired Polymers that Control Intracellular Drug Delivery

  • Allan S. Hoffman;Patrick S. Stayton;Oliver-Press;Niren-Murthy;Chantal A. Lackey;Charles-Cheung;Fiona-Black;Jean Campbell;Nelson Fausto;Themis R. Kyriakides;Paul-Bornstein
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.6 no.4
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    • pp.205-212
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    • 2001
  • One of the important characteristics of biological systems os their ability to change im-portant properties in response to small environmental signals. The molecular mechanisms that biological molecules utilize to sense and respond provide interesting models for the development of "smart" polymeric biomaterials with biomimetic properties. An important example of this is the protein coat of viruses, which contains peptide units that facilitate the trafficking of the virus into the cell via endocytosis, then out of the endosome into the cytoplasm, and from there into the nucleus, We have designed a family of synthetic polymers whose compositions have been de-signed to mimic specific peptides on viral coats that facilitate endosomal escape. Our biomimetic polymers are responsive to the lowered pH whinin endosomes, leading to distruption of the en-dosomal membrane and release of important biomolecular druges such as DNA, RNA, peptides and proteins to the cytoplasm before they are trafficked to lysosomes and degraded by lysosomal en-zymes. In this article, we review our work on the design, synthesis and action of such smart, pH-sensitive polymers.

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Functional Genomic Approaches Using the Nematode Caenorhabditis elegans as a Model System

  • Lee, Jun-Ho;Nam, Seung-Hee;Hwang, Soon-Baek;Hong, Min-Gi;Kwon, Jae-Young;Joeng, Kyu-Sang;Im, Seol-Hee;Shim, Ji-Won;Park, Moon-Cheol
    • BMB Reports
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    • v.37 no.1
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    • pp.107-113
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    • 2004
  • Since the completion of the genome project of the nematode C. elegans in 1998, functional genomic approaches have been applied to elucidate the gene and protein networks in this model organism. The recent completion of the whole genome of C. briggsae, a close sister species of C. elegans, now makes it possible to employ the comparative genomic approaches for identifying regulatory mechanisms that are conserved in these species and to make more precise annotation of the predicted genes. RNA interference (RNAi) screenings in C. elegans have been performed to screen the whole genome for the genes whose mutations give rise to specific phenotypes of interest. RNAi screens can also be used to identify genes that act genetically together with a gene of interest. Microarray experiments have been very useful in identifying genes that exhibit co-regulated expression profiles in given genetic or environmental conditions. Proteomic approaches also can be applied to the nematode, just as in other species whose genomes are known. With all these functional genomic tools, genetics will still remain an important tool for gene function studies in the post genome era. New breakthroughs in C. elegans biology, such as establishing a feasible gene knockout method, immortalized cell lines, or identifying viruses that can be used as vectors for introducing exogenous gene constructs into the worms, will augment the usage of this small organism for genome-wide biology.

Simple and Rapid Detection for Rice stripe virus Using RT-PCR and Porous Ceramic Cubes (RT-PCR과 다공성 세라믹 큐브를 이용한 벼줄무늬잎마름바이러스 간편 진단)

  • Hong, Su-Bin;Kwak, Hae-Ryun;Kim, Mi-Kyeong;Seo, Jang-Kyun;Shin, Jun-Sung;Han, Jung-Heon;Kim, Jeong-Soo;Choi, Hong-Soo
    • Research in Plant Disease
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    • v.21 no.4
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    • pp.321-325
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    • 2015
  • A rapid and simple RT-PCR diagnosis method for detection of Rice stripe virus (RSV), one of major virus infecting rice, was developed using porous ceramic cubes in this study. The porous ceramic cube can rapidly absorb biological molecules such as small-sized proteins and nucleic acid fragments into its pores. We examined whether this ability of porous ceramic cubes could be applied for isolating viral nucleic acids or particles from the RSV- infected plant tissues. In this study, we found that the porous ceramic cube was capable of absorbing a detection level of viruses from the rice tissues infected with RSV and established RT-PCR-based RNA diagnosis method using porous ceramic cubes.

The Novel Biological Action of Antimicrobial Peptides via Apoptosis Induction

  • Cho, Jaeyong;Hwang, In-Sok;Choi, Hyemin;Hwang, Ji Hong;Hwang, Jae-Sam;Lee, Dong Gun
    • Journal of Microbiology and Biotechnology
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    • v.22 no.11
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    • pp.1457-1466
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    • 2012
  • Antimicrobial peptides (AMPs) exert antimicrobial activity against Gram-positive and Gram-negative bacteria, fungi, and viruses by various mechanisms. AMPs commonly possess particular characteristics by harboring cationic and amphipathic structures and binding to cell membranes, resulting in the leakage of essential cell contents by forming pores or disturbing lipid organization. These membrane disruptive mechanisms of AMPs are possible to explain according to the various structure forming pores in the membrane. Some AMPs inhibit DNA and/or RNA synthesis as well as apoptosis induction by reactive oxygen species (ROS) accumulation and mitochondrial dysfunction. Specifically, mitochondria play a major role in the apoptotic pathway. During apoptosis induced by AMPs, cells undergo cytochrome c release, caspase activation, phosphatidylserine externalization, plasma or mitochondrial membrane depolarization, DNA and nuclei damage, cell shrinkage, apoptotic body formation, and membrane blebbing. Even AMPs, which have been reported to exert membrane-active mechanisms, induce apoptosis in yeast. These phenomena were also discovered in tumor cells treated with AMPs. The apoptosis mechanism of AMPs is available for various therapeutics such as antibiotics for antibiotic-resistant pathogens that resist to the membrane active mechanism, and antitumor agents with selectivity to tumor cells.

Towards the Application of Human Defensins as Antivirals

  • Park, Mee Sook;Kim, Jin Il;Lee, Ilseob;Park, Sehee;Bae, Joon-Yong;Park, Man-Seong
    • Biomolecules & Therapeutics
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    • v.26 no.3
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    • pp.242-254
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    • 2018
  • Defensins are antimicrobial peptides that participate in the innate immunity of hosts. Humans constitutively and/or inducibly express ${\alpha}$- and ${\beta}$-defensins, which are known for their antiviral and antibacterial activities. This review describes the application of human defensins. We discuss the extant experimental results, limited though they are, to consider the potential applicability of human defensins as antiviral agents. Given their antiviral effects, we propose that basic research be conducted on human defensins that focuses on RNA viruses, such as human immunodeficiency virus (HIV), influenza A virus (IAV), respiratory syncytial virus (RSV), and dengue virus (DENV), which are considered serious human pathogens but have posed huge challenges for vaccine development for different reasons. Concerning the prophylactic and therapeutic applications of defensins, we then discuss the applicability of human defensins as antivirals that has been demonstrated in reports using animal models. Finally, we discuss the potential adjuvant-like activity of human defensins and propose an exploration of the 'defensin vaccine' concept to prime the body with a controlled supply of human defensins. In sum, we suggest a conceptual framework to achieve the practical application of human defensins to combat viral infections.

Outbreak Pattern of Isolated Enterovirus Causing Aseptic Meningitis in Busan, 2002 Years. (2002년도 바이러스성 뇌수막염의 발생양상)

  • 조경순;정명주
    • Microbiology and Biotechnology Letters
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    • v.32 no.2
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    • pp.179-183
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    • 2004
  • Enterovirus isolation was attempted from samples obtained from aseptic meningitis-suspected patients in hospitals in Busan during 2002. Enteroviruses were found in 83 of 703 cases. Echovirus serotypes 2, 3, 6, 7, 9, 13, 25, 29, 30 were isolated in 72 cases while coxsackievirus serotypes B3 and B4 were isolated in 11 cases. The occurrence was found to be distributed from April thru November with the highest rate during June and July. The strains of Vero and HEp-2 of echovirus and coxsackievirus, respectively, are highly infectious. Age distribution of patients, 61 patients in Enteroviruses and 11 patients in coxsackievirus, respectively, occurred in 0 to 10 year-olds. The sex distribution of the patients is as follows, 52 males (62.7%), 31 females (37.3%). Occurrence rate was found to be higher in male patients. Electron micrograph of echovirus and coxsackievirus show that they are small nonenevolped, isometric-shaped viruses. Isolated RNA from strains of echovirus and coxsackievirus showing cytopathic effects were used to undergo nested PCR which resulted in a 437 bp single band in all the strains.

Gambogic Acid Disrupts Toll-like Receptor4 Activation by Blocking Lipopolysaccharides Binding to Myeloid Differentiation Factor 2

  • Lee, Jin Young;Lee, Byung Ho;Lee, Joo Young
    • Toxicological Research
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    • v.31 no.1
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    • pp.11-16
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    • 2015
  • Our body's immune system has defense mechanisms against pathogens such as viruses and bacteria. Immune responses are primarily initiated by the activation of toll-like receptors (TLRs). In particular, TLR4 is well-characterized and is known to be activated by gram-negative bacteria and tissue damage signals. TLR4 requires myeloid differentiation factor 2 (MD2) as a co-receptor to recognize its ligand, lipopolysaccharides (LPS), which is an extracellular membrane component of gram-negative bacteria. Gambogic acid is a xanthonoid isolated from brownish or orange resin extracted from Garcinia hanburyi. Its primary effect is tumor suppression. Since inflammatory responses are related to the development of cancer, we hypothesized that gambogic acid may regulate TLR4 activation. Our results demonstrated that gambogic acid decreased the expression of pro-inflammatory cytokines ($TNF-{\alpha}$, IL-6, IL-12, and $IL-1{\beta}$) in both mRNA and protein levels in bone marrow-derived primary macrophages after stimulation with LPS. Gambogic acid did not inhibit the activation of Interferon regulatory factor 3 (IRF3) induced by TBK1 overexpression in a luciferase reporter gene assay using IFN-${\beta}$-PRD III-I-luc. An in vitro kinase assay using recombinant TBK1 revealed that gambogic acid did not directly inhibit TBK1 kinase activity, and instead suppressed the binding of LPS to MD2, as determined by an in vitro binding assay and confocal microscopy analysis. Together, our results demonstrate that gambogic acid disrupts LPS interaction with the TLR4/MD2 complex, the novel mechanism by which it suppresses TLR4 activation.

Molecular differentiation of Korean Newcastle disease virus (NDV) by restriction enzyme analysis and pathotype-specific RT-PCR

  • Kwon, Hyuk-Joon;Cho, Sun-Hee;Kim, Sun-Joong
    • Korean Journal of Veterinary Research
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    • v.46 no.4
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    • pp.371-379
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    • 2006
  • Newcastle disease virus (NDV) is a single-stranded negative sense RNA virus, which has been classified as a member of the Avulavirus genus of the Paramyxoviridae family. It is also one of the most important pathogens in the poultry industry. The glycoproteins, fusion (F) and hemagglutinin-neuraminidase (HN), determine the virulence of NDV, and the relevant molecular structures have already been determined. NDV isolates differ in terms of virulence, and at least 2 of 9 genotypes (I-IX) have been shown to co-circulate. Therefore, it is clearly important to differentiate between vaccine strains and field isolates. In vivo pathogenicity tests have been the standard protocol for some time, but molecular methods appear preferable in terms of the rapidity of diagnosis, as well as animal welfare concerns. In this study, we have designed primer sets from HN gene for phylogenetic analysis and restriction enzyme analysis, and from F gene for pathotype-specific RT-PCR. Via the combination of 2 methods, 106 Korean NDV isolates obtained from 1980 to 2005 were differentiated into vaccine strains, and virulent genotypes VI and VII. The genotype VI viruses were only rarely isolated after 1999, and genotype VII, after it was initially isolated from poultry in 1995, recurred in 2000, and then became the main NDV constituting a threat to the Korean poultry industry.

Production and diagnostic application of monoclonal antibodies against infectious bursal disease virus (IBDV에 대한 단크론항체 생산 및 진단적 응용)

  • Ryu, Min-Sang;Song, Yoon-Ki;Lee, Seung-Chul;Mo, In-Pil;Kang, Shien-Young
    • Korean Journal of Veterinary Service
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    • v.34 no.1
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    • pp.5-12
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    • 2011
  • Infectious bursal disease (IBD) caused by infectious bursal disease virus (IBDV) is a highly contagious viral disease in chicken. It causes heavy economic loss by immune suppression and high mortality. The IBDV, designated Avibirnavirus in the Family Birnaviridae, has a double-stranded RNA genome formed by two segments, segment A and segment B. Segment A encodes a 108 KDa polypeptide that is self-cleaved to produce pVP2, VP3 and VP4, and later pVP2 is cleaved to VP2. The VP2 contains the antigenic regions responsible for elicitation of neutralizing antibodies and VP3 is a major immunogenic protein of IBDV. In this study, monoclonal antibodies (MAbs) specific for IBDV were produced and characterized. All 15 MAbs were specific for IBDV and did not react with other viruses used in this study. The protein specificity of MAbs was determined by comparing the reactivity patterns of each MAb with IBDV VP2 and VP234 recombinant baculoviruses and Western blot analysis. As a result, 7 MAbs (1F5, 2C8, 2F4, 3C7, 4C3, 6F11, 6G5) and 5 MAbs (2A4, 2G2, 3F5, 3G2, 4F10) were specific for VP2 and VP3, respectively. The protein specificity of 3 MAbs (2B8, 3F7, 3F8) were not determined. Five (2C8, 2F4, 4C3, 6F11, 6G5) of the VP2-specific MAbs had a neutralizing activity against IBDV. Some MAbs reacted with IBDV-infected bursa of Fabricius by indirect fluorescence antibody (IFA) and immunohistochemistry (IHC) assay. The MAbs produced in this study would be used for diagnostic reagents for the detection of IBDV infection.