相关实验视频
Updated: Jul 4, 2025

10:20
Assembly and Purification of Prototype Foamy Virus Intasomes
Published on: March 19, 2018
5.5K
寡合性HIV-1整合酶结构揭示了因内体组装和RNA结合的功能性可塑性.
Tao Jing1, Zelin Shan1, Tung Dinh2
1The Salk Institute for Biological Studies, La Jolla, CA, 92037, USA.
bioRxiv : the preprint server for biology
|February 8, 2024
概括
艾滋病毒-1整合酶 (IN) 使用其可塑性来形成用于病毒DNA整合和RNA结合的不同结构. 这些发现揭示了IN.
科学领域:
- 结构生物学是结构生物学.
- 病毒学 病毒学
- 分子生物学分子生物学
背景情况:
- 艾滋病毒-1整合酶 (IN) 对于病毒复制至关重要,在DNA整合和病毒RNA结合中起着不同的作用.
- 介导这些功能的IN组件的分子结构尚未完全理解.
- IN四聚合物是开发全抑制剂的关键标.
研究的目的:
- 为了确定HIV-1 IN四相体和六相体的冷-EM结构.
- 阐明IN多样化的寡合体形式和功能背后的分子机制.
- 为开发新型抗病毒疗法提供原子洞察力.
主要方法:
- 低温电子显微镜 (cryo-EM) 用于确定高分辨率结构.
- 生物化学试验用于研究IN功能和寡合化.
- 突变性研究探讨关键接口和功能角色.
主要成果:
- 确定了HIV-1 IN四相体和六相体体的冷-EM结构.
- 在IN中揭示了结构性可塑性,利用C端域和链接器用于不同的寡合组合.
- 确定了对两种IN函数都至关重要的保存接口,将它们与四重化联系起来.
结论:
- 艾滋病毒-1 IN的可塑性允许组装到功能上不同的寡合体状态.
- 对于病毒DNA整合和RNA结合,IN四重化是至关重要的.
- 这些发现为设计全性IN抑制剂提供了原子蓝图.
相关概念视频
Protein Complex Assembly
10.6K
Proteins can form homomeric complexes with another unit of the same protein or heteromeric complexes with different types. Most protein complexes self-assemble spontaneously via ordered pathways, while some proteins need assembly factors that guide their proper assembly. Despite the crowded intracellular environment, proteins usually interact with their correct partners and form functional complexes.
Many viruses self-assemble into a fully functional unit using the infected host cell to...
Many viruses self-assemble into a fully functional unit using the infected host cell to...
10.6K
siRNA - Small Interfering RNAs
16.8K
Small interfering RNAs, or siRNAs, are short regulatory RNA molecules that can silence genes post-transcriptionally, as well as the transcriptional level in some cases. siRNAs are important for protecting cells against viral infections and silencing transposable genetic elements.
In the cytoplasm, siRNA is processed from a double-stranded RNA, which comes from either endogenous DNA transcription or exogenous sources like a virus. This double-stranded RNA is then cleaved by the...
In the cytoplasm, siRNA is processed from a double-stranded RNA, which comes from either endogenous DNA transcription or exogenous sources like a virus. This double-stranded RNA is then cleaved by the...
16.8K
LTR Retrotransposons
17.5K
LTR retrotransposons are class I transposable elements with long terminal repeats flanking an internal coding region. These elements are less abundant in mammals compared to other class I transposable elements. About 8 percent of human genomic DNA comprises LTR retrotransposons. Some of the common examples of LTR retrotransposons are Ty elements in yeast and Copia elements in Drosophila.
The internal coding region of LTR retrotransposons and their mechanism of transposition closely resembles a...
The internal coding region of LTR retrotransposons and their mechanism of transposition closely resembles a...
17.5K
Integrins
4.0K
Animal and protozoan cells do not have cell walls to help maintain shape and provide structural stability. Instead, these eukaryotic cells secrete a sticky mass of carbohydrates and proteins into the spaces between adjacent cells. This network of proteins and molecules is called an extracellular matrix or ECM.
Some ECM proteins assemble into a basement membrane to which the remaining components adhere. Proteoglycans typically form the bulk of the ECM while fibrous proteins, like collagen,...
Some ECM proteins assemble into a basement membrane to which the remaining components adhere. Proteoglycans typically form the bulk of the ECM while fibrous proteins, like collagen,...
4.0K
Protein-protein Interfaces
12.5K
Many proteins form complexes to carry out their functions, making protein-protein interactions (PPIs) essential for an organism's survival. Most PPIs are stabilized by numerous weak noncovalent chemical forces. The physical shape of the interfaces determines the way two proteins interact. Many globular proteins have closely-matching shapes on their surfaces, which form a large number of weak bonds. Additionally, many PPIs occur between two helices or between a surface cleft and a...
12.5K
Intralumenal Vesicles and Multivesicular Bodies
3.5K
Intraluminal vesicles (ILVs) are small vesicles 50-80 nm in diameter formed during the maturation of early endosomes. A specialized endosome containing numerous ILVs is called a multivesicular body (MVB). ILVs contain internalized molecules such as antigens, nucleic acids, proteins, and metabolites. Some of these molecules are released from the MVBs inside exosomes and are transported to other cells. Other MVBs contain molecules that are retained in the ILVs and are later degraded within the...
3.5K

