8.1
病毒是独特的生物体,模糊了生物与非生物系统之间的界限。尽管它们缺乏细胞结构和代谢过程,但在感染宿主时,能够表现出生物的某些特征。其定义性的特征是核酸核心,由DNA或RNA构成,包裹在称为衣壳的蛋白质外壳内。该简易结构使病毒能够侵入宿主细胞,并高效利用宿主的细胞机制进行复制。
病毒的结构与分类
病毒依…
病毒是一类具有核酸核心(DNA 或 RNA)的亚显微感染性病原体,其核酸被包裹在一种称为衣壳的保护性蛋白质外壳中。
它们是专性细胞内寄生体,完全依赖宿主细胞进行复制以及新病毒颗粒的组装。
一些病毒具有源自宿主细胞质膜的脂质包膜。这些包膜含有病毒蛋白。
有包膜病毒利用表面蛋白或糖蛋白附着于宿主细胞,而无包膜病毒则依赖衣壳蛋白与特异性受体结合。
一旦附着,病毒便会将其遗传物质注入宿主细胞内。
例如,HIV 携带 RNA 基因组,并利用逆转录酶将其 RNA 转化为 DNA,随后整合到宿主基因组中。
相反,疱疹病毒含有DNA基因组。
一些病毒,如噬菌体,具有复杂的结构,包括衣壳、尾鞘和尾丝,使其能够将遗传物质直接注入细菌细胞中。
病毒可感染植物、动物和细菌,干扰细胞过程,并导致损伤或细胞裂解。
View the full transcript and gain access to JoVE Core videos
Q1: What is the basic structure of a virus?
A virus consists of a nucleic acid core—either DNA or RNA—enclosed in a protective protein shell called a capsid. Some viruses have an additional lipid envelope derived from the host cell membrane that incorporates viral proteins. This simple structure allows viruses to efficiently invade host cells and use their machinery for replication.
Q2: How do enveloped and non-enveloped viruses differ in attaching to host cells?
Enveloped viruses use specialized surface proteins or glycoproteins to recognize and attach to specific receptors on host cells, often fusing their lipid envelope with the host cell membrane. Non-enveloped viruses rely on capsid proteins for attachment and entry. Both strategies enable viruses to deliver their genetic material into the host cell.
Q3: How does HIV use reverse transcriptase during infection?
HIV, an RNA virus, uses the enzyme reverse transcriptase to convert its RNA genome into DNA, known as a provirus. This DNA integrates into the host genome, enabling persistent infection and replication. This mechanism allows HIV to establish long-term infection by becoming part of the host's genetic material.
Q4: What structural features enable bacteriophages to infect bacterial cells?
Bacteriophages possess complex structures including a capsid, tail sheath, and tail fibers that enable them to inject genetic material directly into bacterial cells. These specialized components allow bacteriophages to penetrate the bacterial cell wall and deliver their DNA into the cytoplasm, facilitating infection of bacteria.
Q5: Why are viruses considered obligate intracellular parasites?
Viruses are obligate intracellular parasites because they rely entirely on host cells for replication and assembly of new viral particles. They lack their own metabolic machinery and cellular structures, so they must hijack the host cell's resources and enzymes to reproduce. Without a host cell, viruses cannot replicate independently.
Q6: What happens to host cells when viruses replicate?
Viral replication often disrupts host cellular functions, leading to cell damage, apoptosis, or lysis. In multicellular organisms, this disruption can result in various diseases ranging from mild infections to severe conditions such as AIDS and cancer. The extent of damage depends on the virus type and the infected cell's ability to resist viral takeover.
Q7: How do DNA viruses like herpesviruses replicate differently from RNA viruses?
DNA viruses such as herpesviruses encode their own replication enzymes, including DNA polymerase, to supplement the host's transcriptional machinery. This allows them to express viral genes and replicate their DNA independently. In contrast, RNA viruses like HIV must convert their RNA to DNA or use host machinery differently to achieve replication.