相关实验视频
Updated: Jul 12, 2025

06:45
Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
15.3K
含有蛋白质的核酸结合寡合化域的多方面的作用和调节
Charneal L Dixon1, Amy Wu2, Gregory D Fairn1,2,3
1Department of Pathology, Dalhousie University, Halifax, NS, Canada.
Frontiers in immunology
|October 23, 2023
概括
含有核酸结合寡合化域的蛋白质 (NOD1和NOD2) 可以检测细菌糖和细胞应激. 本综述详细介绍了它们在免疫和炎症性疾病中的机制.
科学领域:
- 免疫学 免疫学 免疫学
- 细胞生物学 细胞生物学
- 微生物学 微生物学
背景情况:
- 含有核酸结合寡合化域的蛋白质 (NOD1和NOD2) 是细胞内模式识别受体.
- 他们从细菌细胞壁中识别了糖 (PGN) 碎片.
- NODs在天生的免疫力中扮演着不同的角色,包括抗病毒反应,自和ER压力诱导的炎症.
研究的目的:
- 审查NOD1和NOD2检测微生物和细胞应激的机制.
- 详细介绍NOD激活和信号的分子调节.
- 突出最近的发现及其对炎症疾病病原发生的影响.
主要方法:
- 对NOD1和NOD2.2研究的文献综述.
- 对NOD激活和信号的分子机制的分析.
- 关于NOD功能和疾病影响的最新证据的综合.
主要成果:
- NOD1和NOD2的激活在细胞膜上受到动态调节.
- NOD信号传递对宿主防御和炎症性疾病都有贡献.
- 最近的研究澄清了PGN识别之外的NOD角色.
结论:
- 了解NOD调节对于开发针对性治疗炎症性疾病至关重要.
- NOD1和NOD2是天生的免疫和细胞平衡的关键参与者.
- 对NOD信号通路的进一步研究将揭示疾病机制.
相关概念视频
Regulation of Nuclear Protein Sorting
2.4K
Nuclear protein sorting regulates nucleus composition and gene expression, crucial for determining the fate of a eukaryotic cell. Hence, the entry and exit of molecules across the nuclear envelope is a tightly controlled process. Nuclear protein sorting can be inhibited by one of the following ways: 1) masking cargo signal sequences, 2) modifying the nuclear receptor's affinity for cargo, 3) controlling the nuclear pore size, 4) retaining the cargo during its transit to the cytosol or the...
2.4K
Assembly of Signaling Complexes
5.8K
Multiprotein signaling complexes are formed in a dynamic process involving protein-protein interactions at the cytoplasmic domain of transmembrane receptors or enzymatic and non-enzymatic proteins associated with the receptor. These complexes ensure the activation and propagation of intracellular signals that regulate cell functions.
Interaction domains in cell signaling
Interaction domains recognize exposed features of their binding partners containing post-translationally modified sequences,...
Interaction domains in cell signaling
Interaction domains recognize exposed features of their binding partners containing post-translationally modified sequences,...
5.8K
Covalently Linked Protein Regulators
6.8K
Proteins can undergo many types of post-translational modifications, often in response to changes in their environment. These modifications play an important role in the function and stability of these proteins. Covalently linked molecules include functional groups, such as methyl, acetyl, and phosphate groups, and also small proteins, such as ubiquitin. There are around 200 different types of covalent regulators that have been identified.
These groups modify specific amino acids in a protein....
These groups modify specific amino acids in a protein....
6.8K
Conservation of Protein Domains Over Different Proteins
10.9K
Protein domains are small structurally independent units that are part of a single amino acid chain. Although these domains are often structurally independent, they may rely on synergistic effects to perform their functions as part of a larger protein. Protein domains may be conserved within the same organism, as well as across different organisms.
A limited set of protein domains often duplicate and recombine during evolution. These domains can be organized in different combinations to...
A limited set of protein domains often duplicate and recombine during evolution. These domains can be organized in different combinations to...
10.9K
Cooperative Binding of Transcription Regulators
6.4K
Transcriptional regulators bind to specific cis-regulatory sequences in the DNA to regulate gene transcription. These cis-regulatory sequences are very short, usually less than ten nucleotide pairs in length. The short length means that there is a high probability of the exact same sequence randomly occurring throughout the genome. Since regulators can also bind to groups of similar sequences, this further increases the chances of random binding. Transcriptional regulators form...
6.4K
Regulation of Expression at Multiple Steps
923
The gene expression in cells is regulated at different stages: (i) transcription, (ii) RNA processing, (iii) RNA localization, and (iv) translation. Transcriptional regulation is mediated by regulatory proteins such as transcription factors, activators, or repressors—these control gene expression by initiating or inhibiting the transcription of genes. Once a precursor or pre-mRNA is produced, it undergoes post-transcriptional modification, including 5' capping, splicing, and the...
923

