Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Bacterial Protein Maturation01:26

Bacterial Protein Maturation

94
Bacterial protein maturation is a tightly regulated process that ensures newly synthesized polypeptides achieve correct functional conformations. This maturation involves a series of modifications, folding events, and quality control steps, often assisted by specialized chaperone proteins.N-Terminal ModificationsThe maturation of bacterial polypeptides begins cotranslationally as the polypeptide exits the ribosome. The first amino acid, N-formylmethionine (fMet), is typically modified at the...
94
Molecular Chaperones and Protein Folding03:00

Molecular Chaperones and Protein Folding

18.5K
The native conformation of a protein is formed by interactions between the side chains of its constituent amino acids. When the amino acids cannot form these interactions, the protein cannot fold by itself and needs chaperones. Notably, chaperones do not relay any additional information required for the folding of polypeptides; the native conformation of a protein is determined solely by its amino acid sequence. Chaperones catalyze protein folding without being a part of the folded protein.
The...
18.5K
RNA Stability01:53

RNA Stability

33.9K
Intact DNA strands can be found in fossils, while scientists sometimes struggle to keep RNA intact under laboratory conditions. The structural variations between RNA and DNA underlie the differences in their stability and longevity. Because DNA is double-stranded, it is inherently more stable. The single-stranded structure of RNA is less stable but also more flexible and can form weak internal bonds. Additionally, most RNAs in the cell are relatively short, while DNA can be up to 250 million...
33.9K
Nucleic Acids02:43

Nucleic Acids

45.5K
Nucleic acids are the most important macromolecules for the continuity of life. They carry the cell's genetic blueprint and carry instructions for its functioning.
DNA and RNA
The two main types of nucleic acids are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). DNA is the genetic material in all living organisms, ranging from single-celled bacteria to multicellular mammals. It is in the nucleus of eukaryotes and in the organelles, chloroplasts, and mitochondria. In prokaryotes,...
45.5K
Types of RNA01:20

Types of RNA

6.5K
Three main types of RNA are involved in protein synthesis: messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA). These RNAs perform diverse functions and can be broadly classified as protein-coding or non-coding RNA. Non-coding RNAs play important roles in regulating gene expression in response to developmental and environmental changes. Non-coding RNAs in prokaryotes can be manipulated to develop more effective antibacterial drugs for human or animal use.
RNA Performs Diverse...
6.5K
Nucleic acids02:43

Nucleic acids

169.7K
Nucleic acids are the most important macromolecules for the continuity of life. They carry the cell's genetic blueprint and carry instructions for its functioning.
DNA and RNA
The two main types of nucleic acids are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA). DNA is the genetic material in all living organisms, ranging from single-celled bacteria to multicellular mammals. It is in the nucleus of eukaryotes and in the organelles, chloroplasts, and mitochondria. In prokaryotes,...
169.7K

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Microprotein Regulates G-quadruplex Driven RNA Aggregation.

bioRxiv : the preprint server for biology·2026
Same author

Host Cell Central Carbon Metabolism and Cellular NAD<sup>+</sup> Pool Regulate Efficient Replication of Vesicular Stomatitis Virus.

Viruses·2026
Same author

Molecular Mechanisms Governing Peptide Nanodisc Assembly and Stability.

bioRxiv : the preprint server for biology·2026
Same author

The Dual Role of Nrf2 Signaling in Virus Infections: Antiviral Guardian or Proviral Accomplice?

Pathogens (Basel, Switzerland)·2026
Same author

Visualization of liquid-liquid phase transitions using a tiny G-quadruplex binding protein.

Nature communications·2025
Same author

Bifunctional nanodisc platforms for studies on self-assembly and amyloid fibrillation.

Chemical communications (Cambridge, England)·2025

相关实验视频

Updated: Sep 15, 2025

Method for the Isolation and Identification of mRNAs, microRNAs and Protein Components of Ribonucleoprotein Complexes from Cell Extracts using RIP-Chip
13:34

Method for the Isolation and Identification of mRNAs, microRNAs and Protein Components of Ribonucleoprotein Complexes from Cell Extracts using RIP-Chip

Published on: September 29, 2012

27.7K

蛋白质和RNA的伴侣.

Bikash R Sahoo1, James Ca Bardwell1

  • 1Howard Hughes Medical Institute & Molecular Cellular and Developmental Biology Department, University of Michigan, MI, 48109, USA.

Molecular aspects of medicine
|July 15, 2025
PubMed
概括

非蛋白质分子,如RNA和G-四复合体,通过防止蛋白质和RNA聚合,作为伴侣来维持细胞健康. 这些发现对于了解帕金森病和ALS等疾病至关重要.

科学领域:

  • 分子生物学分子生物学
  • 生物化学 生物化学
  • 细胞平衡是细胞的平衡.

背景情况:

  • 细胞依赖分子陪伴者来维持蛋白质和RNA的平衡.
  • 异常的蛋白质和RNA聚合与神经退行性疾病有关.

研究的目的:

  • 探索超越蛋白质的非传统的陪伴系统.
  • 突出RNA结合伴侣和核酸在细胞保护中的作用.
  • 为了将陪伴者功能与帕金森病和ALS等疾病联系起来.

主要方法:

  • 审查关于分子伴侣的现有文献.
  • 分析RNA结合的伴侣机制.
  • 研究G-四重复的结构和功能.
  • 蛋白质和非蛋白质陪伴者系统的比较.

主要成果:

  • 结合RNA的伴侣蛋白调节RNA结构并调节细胞内颗粒.
  • 核酸,特别是G-四复合体,有效地防止蛋白质聚合并促进折叠.
  • 这些非蛋白质伴侣在G-四重复结合的粉样蛋白聚合和重复扩张疾病中至关重要.

结论:

更多相关视频

Detection of the pH-dependent Activity of Escherichia coli Chaperone HdeB In Vitro and In Vivo
08:32

Detection of the pH-dependent Activity of Escherichia coli Chaperone HdeB In Vitro and In Vivo

Published on: October 23, 2016

10.7K
In Situ Monitoring of Transiently Formed Molecular Chaperone Assemblies in Bacteria, Yeast, and Human Cells
08:58

In Situ Monitoring of Transiently Formed Molecular Chaperone Assemblies in Bacteria, Yeast, and Human Cells

Published on: September 2, 2019

7.2K

相关实验视频

Last Updated: Sep 15, 2025

Method for the Isolation and Identification of mRNAs, microRNAs and Protein Components of Ribonucleoprotein Complexes from Cell Extracts using RIP-Chip
13:34

Method for the Isolation and Identification of mRNAs, microRNAs and Protein Components of Ribonucleoprotein Complexes from Cell Extracts using RIP-Chip

Published on: September 29, 2012

27.7K
Detection of the pH-dependent Activity of Escherichia coli Chaperone HdeB In Vitro and In Vivo
08:32

Detection of the pH-dependent Activity of Escherichia coli Chaperone HdeB In Vitro and In Vivo

Published on: October 23, 2016

10.7K
In Situ Monitoring of Transiently Formed Molecular Chaperone Assemblies in Bacteria, Yeast, and Human Cells
08:58

In Situ Monitoring of Transiently Formed Molecular Chaperone Assemblies in Bacteria, Yeast, and Human Cells

Published on: September 2, 2019

7.2K
  • 非蛋白质宏分子,包括RNA和G四重复,具有显著的伴侣活性.
  • 了解这些多样化的陪伴系统为疾病机制和潜在的治疗点提供了新的见解.
  • 伴奏作用的原理在不同的分子类中保持一致.