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相关概念视频

Viral Recombination00:57

Viral Recombination

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Cells are sometimes infected by more than one virus at once. When two viruses disassemble to expose their genomes for replication in the same cell, similar regions of their genomes can pair together and exchange sequences in a process called recombination. Alternatively, viruses with segmented genomes can swap segments in a process called reassortment.
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Viral Mutations00:36

Viral Mutations

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A mutation is a change in the sequence of bases of DNA or RNA in a genome. Some mutations occur during replication of the genome due to errors made by the polymerase enzymes that replicate DNA or RNA. Unlike DNA polymerase, RNA polymerase is prone to errors because it is not capable of “proofreading” its work. Viruses with RNA-based genomes, like HIV, therefore accrue mutations faster than viruses with DNA-based genomes. Because mutation and recombination provide the raw material...
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Exon Recombination02:32

Exon Recombination

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The evolution of new genes is critical for speciation. Exon recombination, also known as exon shuffling or domain shuffling, is an important means of new gene formation. It is observed across vertebrates, invertebrates, and in some plants such as potatoes and sunflowers. During exon recombination, exons from the same or different genes recombine and produce new exon-intron combinations, which might evolve into new genes. 
Exon shuffling follows “splice frame rules.” Each exon...
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Viral Meningitis01:18

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Viral meningitis is the most common form of meningitis and is often referred to as aseptic meningitis to indicate the absence of bacterial involvement. It is generally milder than bacterial meningitis, with symptoms including fever, headache, stiff neck, drowsiness, nausea, photophobia, and vomiting. Rarely, more severe manifestations or death may occur. Common causative agents include enteroviruses, particularly coxsackie A and B viruses and echoviruses, all members of the Enterovirus genus...
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Arboviral Encephalitis01:25

Arboviral Encephalitis

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Arboviral encephalitis refers to brain inflammation caused by arthropod-borne viruses, particularly those transmitted through mosquito vectors. Among these, West Nile virus (WNV), a member of the Flaviviridae family, is a significant public health concern. WNV is an enveloped, positive-sense, single-stranded RNA virus. Human infection typically begins when an infected mosquito introduces the virus into the dermis during feeding. The primary transmission cycle involves birds as amplifying hosts...
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Encephalitis ll: Pathophysiology01:26

Encephalitis ll: Pathophysiology

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Encephalitis is inflammation of the brain parenchyma caused by direct viral invasion or immune-mediated mechanisms triggered by infections or tumors. Both processes lead to neuronal injury, disrupted neurotransmission, and diverse neurological symptoms, often with overlapping clinical and pathological features.Autoimmune EncephalitisIn autoimmune encephalitis, antibodies target neuronal antigens on cell surfaces, synapses, or within neurons. A key example is anti-NMDAR encephalitis, which can...
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Bacterial Artificial Chromosomes: A Functional Genomics Tool for the Study of Positive-strand RNA Viruses
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使用循环聚合酶延伸反应的传播脑炎病毒的逆遗传系统.

Saki Mitsunaga1, Tomokazu Tamura2, Samuel Nyampong1

  • 1Laboratory of Veterinary Microbiology, Joint Graduate School of Veterinary Medicine, Yamaguchi University, Yamaguchi, Japan.

Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
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概括

研究人员成功地使用一种无大肠杆菌的方法 (称为循环聚合酶延伸反应 (CPER)) 制造了感染性脑炎病毒 (TBEV). 这种新技术克服了TBEV研究中的挑战,并为研究这种危险的神经病原体提供了有价值的工具.

关键词:
基于聚合酶连锁反应的循环聚合酶延伸反应.反向遗传学系统的反向遗传学系统感染性脑炎病毒.

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科学领域:

  • 病毒学 病毒学
  • 分子生物学分子生物学
  • 神经科学是一个神经科学.

背景情况:

  • 传染性脑炎病毒 (TBEV) 是一种导致人类严重神经疾病的Orthoflavivirus.
  • 传统的逆转基因系统受到Orthoflavivirus基因组对大肠杆菌的毒性所阻碍.
  • 一种无大肠杆菌的方法,循环聚合酶延伸反应 (CPER),已经显示出对其他RNA病毒的承诺.

研究的目的:

  • 建立使用CPER的复合TBEV生产系统.
  • 评估通过CPER产生的TBEV的生存能力和特征.
  • 在小鼠模型中评估CPER衍生的TBEV的传染性和致病性.

主要方法:

  • 循环聚合酶延伸反应 (CPER) 适用于TBEV基因组组件的应用.
  • 基因组测序和斑块形成试验以表征已获救的TBEV菌株 (Oshima,Sofjin,Hypr).
  • 在C57BL/6小鼠中进行传染性和致病性研究.

主要成果:

  • 通过使用CPER,成功地产生了感染性重组TBEV菌株 (Oshima,Sofjin,Hypr).
  • 被救出的TBEVs表现出细胞病变效应和BHK细胞中的高效复制.
  • 来自CPER的TBEV在小鼠模型中表现出内在的毒性,观察到核酸和氨基酸的替代.

结论:

  • CPER是一种有效的无大肠杆菌的方法,用于产生传染性TBEV.
  • 这种方法促进了对TBEV菌株的研究,并为未来的研究提供了潜力.
  • 通过CPER成功挽救TBEV,为了解弗拉维病毒复制和病变产生提供了有价值的工具.