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相关概念视频

Ribosome Profiling02:24

Ribosome Profiling

3.6K
Ribosome profiling or ribo-sequencing is a deep sequencing technique that produces a snapshot of active translation in a cell. It selectively sequences the mRNAs protected by ribosomes to get an insight into a cell’s translation landscape at any given point in time.
Applications of ribosome profiling
Ribosome profiling has many applications, including in vivo monitoring of translation inside a particular organ or tissue type and quantifying new protein synthesis levels.
The technique...
3.6K
Protein-protein Interfaces02:04

Protein-protein Interfaces

13.4K
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...
13.4K
Leaky Scanning02:28

Leaky Scanning

5.2K
During most eukaryotic translation processes, the small 40S ribosome subunit scans an mRNA from its 5' end until it encounters the first start AUG codon. The large 60S ribosomal subunit then joins the smaller one to initiate protein synthesis. The location of the translation initiation is largely determined by the nucleotides near the start codon as there may be multiple translation initiation sites present on the mRNA.  Marilyn Kozak discovered that the sequence RCCAUGG (where R...
5.2K
Translational Regulation01:29

Translational Regulation

104
Translational regulation in prokaryotes ensures efficient protein synthesis by controlling ribosome access to mRNA. This regulation is mediated by secondary RNA structures, including translational riboswitches, RNA thermometers, and small RNAs (sRNAs), which respond to intracellular and environmental signals to modulate gene expression.Translational RiboswitchesRiboswitches in the leader region of mRNAs can regulate translation by altering the accessibility of the Shine-Dalgarno (SD) sequence,...
104
Improving Translational Accuracy02:07

Improving Translational Accuracy

11.9K
Base complementarity between the three base pairs of mRNA codon and the tRNA anticodon is not a failsafe mechanism. Inaccuracies can range from a single mismatch to no correct base pairing at all. The free energy difference between the correct and nearly correct base pairs can be as small as 3 kcal/ mol. With complementarity being the only proofreading step, the estimated error frequency would be one wrong amino acid in every 100 amino acids incorporated. However, error frequencies observed in...
11.9K
Types of RNA01:23

Types of RNA

65.1K
Overview
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 the regulation of 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...
65.1K

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相关实验视频

Updated: Sep 15, 2025

Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation
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Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation

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解码RNA-蛋白相互作用:方法学的进步和新出现的挑战 (高级遗传学2/06)

Wenkai Yi, Jian Yan

    Advanced genetics (Hoboken, N.J.)
    |July 14, 2025
    PubMed
    概括

    这项研究探讨了先进的RNA-蛋白相互作用技术. 这些方法帮助科学家通过识别关键的分子参与者来了解基因调节和疾病.

    科学领域:

    • 分子生物学分子生物学
    • 生物化学 生物化学
    • 遗传学 是一个遗传学.

    背景情况:

    • RNA-蛋白相互作用是基因表达和细胞过程的基础.
    • 这些相互作用的失调与各种人类疾病有关.
    • 了解这些分子对话对于治疗开发至关重要.

    研究的目的:

    • 剖析和介绍研究RNA-蛋白相互作用的前沿方法.
    • 突出这些相互作用在基因调节和疾病发病过程中的重要性.
    • 弥合基本机理学发现与治疗应用之间的差距.

    主要方法:

    • 对检测RNA与蛋白质结合的RNA中心技术的审查.
    • 分析以蛋白质为中心的方法来识别RNA结合蛋白.
    • 讨论全面交互映射的综合策略.

    主要成果:

    • 识别和分类各种RNA-蛋白相互作用检测方法.
    • 强调生物系统中RNA和蛋白质之间的动态相互作用.
    • 演示这些技术如何"卷入"难以捉摸的分子目标.

    结论:

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    • 对于解码复杂的RNA-蛋白相互作用,创新技术是必不可少的.
    • 对这些相互作用的更深入的理解提供了重要的治疗潜力.
    • 审查的方法推进了分子对话研究领域.