1.Progress on the Function of Herpesvirus-encoded MicroRNAs.
Chinese Journal of Virology 2015;31(6):704-711
Since Epstein Barr virus was shown to encode microRNAs(miRNAs) in 2004, more than 470 miRNAs have been discovered in α-, β-, and γ-herpesviruses. MiRNAs are small non-coding RNA molecules and generally only have 18-25 nucleotides in length, which can regulate the expression of target genes by targeting its transcripts. Herpesvirus-encoded miRNAs not only target the key genes from latency to lytic replication, but also regulate various host cellular genes. Current data manifest that herpesvirus-encoded miRNAs can regulate viral latent infection and lytic replication, immune recognition, apoptosis, and tumorigenesis. The purpose of this paper is to summarize the targets and their fuction of hepesvirus-encoded miRNAs, in order to provide theoretical support for further analysis herpesviral pathogenesis.
Animals
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Herpesviridae
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genetics
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metabolism
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Herpesviridae Infections
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virology
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Humans
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MicroRNAs
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genetics
;
metabolism
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RNA, Viral
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genetics
;
metabolism
3.Research advances in herpesviruses glycoprotein N gene and its encoded protein.
Chinese Journal of Virology 2014;30(2):208-212
Glycoprotein N is encoded by glycoprotein N (gN) gene of herpesviruses. The amino acid composition and expression level of this protein vary among difference species of herpesviruses. According to present studies, gN protein is expressed in cytoplasm of host cells, mainly in endoplasmic reticulum. The gN forms a complex with glycoprotein M in host cells. The complex is involved in the processes of viral replication and inter-cellular infection. Moreover, this protein plays a role in immune evasion from host immune system. The study will provide a theoretical basis for further study of herpesvirus gN gene and its encoded protein.
Animals
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Herpesviridae
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genetics
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metabolism
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Herpesviridae Infections
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virology
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Humans
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Viral Envelope Proteins
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genetics
;
metabolism
4.Research advances of herpesvirus gB gene and its encoding protein.
Long JIANG ; Hui-juan LIU ; An-chun CHENG ; Ming-shu WANG ; Zheng-li CHEN ; Ren-yong JIA ; De-kang ZHU ; Xiao-yue CHEN
Chinese Journal of Virology 2010;26(5):414-417
Glycoproteins
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genetics
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metabolism
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Herpesviridae
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genetics
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metabolism
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Viral Proteins
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genetics
;
metabolism
5.Advances in UL7 gene of herpesvirus.
Jie HUANG ; An-Chun CHENG ; Ming-Shu WANG
Chinese Journal of Virology 2011;27(5):501-504
Animals
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Herpesviridae
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genetics
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metabolism
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Humans
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Viral Proteins
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chemistry
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genetics
;
metabolism
6.Neurophilic herpesvirus: a powerful tool for neuroscience research.
Mingzhi LI ; Li PAN ; Hongxia WU ; Huaji QIU ; Yimin WANG ; Yuan SUN
Chinese Journal of Biotechnology 2023;39(1):7-18
Viruses are powerful tools for the study of modern neurosciences. Most of the research on the connection and function of neurons were done by using recombinant viruses, among which neurotropic herpesvirus is one of the most important tools. With the continuous development of genetic engineering and molecular biology techniques, several recombinant neurophilic herpesviruses have been engineered into different viral tools for neuroscience research. This review describes and discusses several common and widely used neurophilic herpesviruses as nerve conduction tracers, viral vectors for neurological diseases, and lytic viruses for neuro-oncology applications, which provides a reference for further exploring the function of neurophilic herpesviruses.
Herpesviridae/genetics*
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Neurosciences
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Genetic Vectors/genetics*
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Genetic Engineering
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Neurons
7.Molecular Mechanism of Glycoprotein-induced Cell-Cell Fusion of Herpesviruses.
Chinese Journal of Virology 2016;32(1):101-107
Herpesviridae is a large family comprising linear, double-stranded DNA viruses. Herpesviridae contains three subfamilies: α-, β- and γ-herpesviruses. The glycoproteins gB, gH and gL of each subfamily form the "core fusion function" in cell-cell fusion. Other herpesviruses also need additional glycoproteins to promote fusion, such as gD of the Herpes simplex virus, gp42 of the Epstein-Barr virus, and gO or UL128-131 of the Human cytomegalovirus. In contrast, glycoproteins gM or gM/gN of herpesvirus inhibit fusion. We describe the molecular mechanisms of glycoprotein-induced fusion and entry of herpesviruses. It will be helpful to further study the pathogenic mechanism of herpesvirus.
Animals
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Cell Fusion
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Glycoproteins
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genetics
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metabolism
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Herpesviridae
;
genetics
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metabolism
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Herpesviridae Infections
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physiopathology
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virology
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Humans
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Viral Proteins
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genetics
;
metabolism
8.Research Advances in Cyprinid Herpesvirus 3.
Shucheng ZHENG ; Qing WANG ; Yingying LI ; Weiwei ZENG ; Yingying WANG ; Chun LIU ; Hongru LIANG ; Cunbin SHI
Chinese Journal of Virology 2016;32(1):108-120
Cyprinid herpesvirus 3 (CyHV-3) is the causative agent of an extremely contagious and aggressive disease afflicting common corp Cyprinus carpio L. termed koi herpesvirus disease (KHVD). Since it was first reported in 1997, the virus has spread worldwide rapidly, leading to enormous financial losses in industries based on common carp and koi carp. This review summarizes recent advances in CyHV-3 research on the etiology, epidemiology, pathogenesis, diagnosis, prevention, and control of KHVD.
Animals
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Fish Diseases
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diagnosis
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virology
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Fishes
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classification
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virology
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Herpesviridae
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genetics
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isolation & purification
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physiology
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Herpesviridae Infections
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diagnosis
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veterinary
;
virology
9.Effect of Fixation Time and Freeze-thaw Cycles on the Molecular Analysis of Viral DNA.
Journal of Veterinary Science 2003;4(2):203-204
This study was done to determine the effect of fixation time and freeze-thaw (FT) cycles on the quantitation and positivity of viral DNA. There were significant decreases in the viral DNA copies in the specimens subjected to formalin fixation more than 24 hours. However, The viral DNAs of specimens with FT cycles were not remarkably decreased as compare with those of fresh samples. These results implicate that there may be need to fix the samples less than 24 hours. Also, results of retrospective studies performed on specimens subjected to long-term fixation may be compromised.
DNA, Viral/*analysis/*genetics
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Freezing
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Herpesviridae/chemistry/genetics
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Polymerase Chain Reaction/methods
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Time Factors
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Virology/*methods
10.Progress in microRNAs associated with major avian viruses.
Chaolai MAN ; Weitao MU ; Dongxue ZHAO ; Yang CHANG
Chinese Journal of Biotechnology 2015;31(9):1289-1300
Recently, avian viral diseases have become one of the main models to study mechanisms of viral infections and pathogenesis. The study of regulatory relationships and mechanisms between viruses and microRNAs has also become the focus. In this review, we briefly summarize the general situations of microRNAs encoded by avian herpesviruses. Also, we analyze the regulatory relationships between tumorigenicity of avian herpesviruses and microRNAs. Additionally, the possible applications for prevention and treatment of viral diseases (such as infectious bursal disease, avian influenza and avian leucosis) using the regulatory mechanisms of microRNAs are also discussed.
Animals
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Avian Leukosis
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Birds
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virology
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Birnaviridae Infections
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Herpesviridae
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genetics
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Influenza in Birds
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MicroRNAs
;
genetics