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相关概念视频

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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Mechanisms of Retrovirus-induced Cancers01:51

Mechanisms of Retrovirus-induced Cancers

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Retroviruses are RNA viruses that have been shown to cause cancers in diverse species, including chickens, mice, cats, and monkeys. The RNA genomes of these viruses are first reverse-transcribed into single and then double-stranded DNA (dsDNA) copies. This dsDNA called proviral DNA then integrates into the host genome. Subsequently, the host cell transcribes the proviral DNA in concert with the chromosomal DNA. This leads to the production of viral RNA and proteins that assemble at the host...
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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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Retroviruses02:33

Retroviruses

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Retroviruses and retrotransposons both insert copies of their genetic elements into the genome of the host cell. Thus, the viral genes are passed on when the host genome is replicated or translated. A typical retroviral DNA sequence contains 3-4 genes that encode the different proteins required for its structural assembly and function as a molecular parasite. This DNA is transcribed into a single mRNA, which is very similar in structure to conventional mRNAs, i.e., it is capped at the 5’...
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Rous Sarcoma Virus (RSV) and Cancer01:03

Rous Sarcoma Virus (RSV) and Cancer

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Rous Sarcoma virus or RSV was discovered by F. Peyton Rous in the year 1911 as a filterable transmissible agent that could cause tumors in chickens. He won a Nobel Prize for this discovery in 1966. His experiments clearly demonstrated that some cancers could be caused by infectious agents and led to the discovery of many more cancer-causing viruses in animals as well as humans.
RSV is a retrovirus that contains two copies of a plus-strand  RNA genome. Its genome consists of four main open...
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Types of Genetic Transfer Between Organisms02:18

Types of Genetic Transfer Between Organisms

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Genome-wide RNAi Screening to Identify Host Factors That Modulate Oncolytic Virus Therapy
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宿主内部和宿主之间的进化影响对病毒瘤原性.

Yoshiki Koizumi1,2, Michael B Bonsall1

  • 1Department of Biology, University of Oxford, South Parks Road, Oxford OX1 3RB, United Kingdom.

Virus evolution
|July 3, 2025
PubMed
概括

数学模型揭示了致癌病毒 (瘤病毒) 如何进化. 了解这些进化动态,特别是细胞转化和增殖率,是解释病毒多样性和宿主相互作用的关键.

科学领域:

  • 进化生物学是进化的生物学.
  • 病毒学 病毒学
  • 免疫学 免疫学 免疫学

背景情况:

  • 超过10%的癌症与致癌病毒 (瘤病毒) 有关.
  • 病毒获得致癌性质的进化途径尚不清楚.
  • 病毒瘤发生涉及病毒和宿主免疫系统之间的复杂相互作用.

研究的目的:

  • 调查影响病毒瘤性在宿主内部和宿主之间水平的进化条件.
  • 模拟oncovirus-免疫系统相互作用作为一个扩展的敌人-受害者关系.
  • 检查瘤性特征如何影响宿主内病毒动态,包括细胞转化和增殖率.

主要方法:

  • 利用数学建模来模拟oncovirus与免疫系统的相互作用.
  • 分析了感染细胞转化速率对癌前状态的影响.
  • 在宿主体内的各种条件下评估癌前细胞增殖率.

主要成果:

  • 确定了在宿主内部和宿主之间最大限度地提高病毒适应性的转化和扩散率.
  • 发现最佳的转化速率取决于病毒的产生,免疫性和癌前细胞的免疫消除.
  • 观察到中间的增殖率可以最大限度地降低病毒适应性,这可能解释了致癌病毒的多样性.
关键词:
显而易见的竞争.健身景观 健身景观数学建模的数学建模嵌套模型嵌套模型在oncovirus上使用.病毒动态 病毒动态

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结论:

  • 提供了对病毒瘤性进化驱动因素的见解.
  • 突出了致癌病毒和宿主免疫反应之间的复杂相互作用.
  • 为癌症病毒中观察到的多样性提供了解释.