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相关概念视频

lncRNA - Long Non-coding RNAs02:39

lncRNA - Long Non-coding RNAs

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In humans, more than 80% of the genome gets transcribed. However, only around 2% of the genome codes for proteins. The remaining part produces non-coding RNAs which includes ribosomal RNAs, transfer RNAs, telomerase RNAs, and regulatory RNAs, among other types. A large number of regulatory non-coding RNAs have been classified into two groups depending upon their length – small non-coding RNAs, such as microRNA, which are less than 200 nucleotides in length, and long non-coding RNA...
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Half-life of a Reaction02:42

Half-life of a Reaction

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The half-life of a reaction (t1/2) is the time required for one-half of a given amount of reactant to be consumed. In each succeeding half-life, half of the remaining concentration of the reactant is consumed. For example, during the decomposition of hydrogen peroxide, during the first half-life (from 0.00 hours to 6.00 hours), the concentration of H2O2 decreases from 1.000 M to 0.500 M. During the second half-life (from 6.00 hours to 12.00 hours), the concentration decreases from 0.500 M to...
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Translation01:31

Translation

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Lesson: Translation
Translation is the process of synthesizing proteins from the genetic information carried by messenger RNA (mRNA). Following transcription, it constitutes the final step in the expression of genes. This process is carried out by ribosomes, complexes of protein and specialized RNA molecules. Ribosomes, transfer RNA (tRNA), and other proteins produce a chain of amino acids—the polypeptide—as the end product of translation.
Translation Produces the Building Blocks of...
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Characteristics of Life01:23

Characteristics of Life

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Biology is a natural science that studies life and living organisms, including their structure, function, development, interactions, evolution, distribution, and taxonomy. The field's scope is extensive and divided into several specialized disciplines, such as anatomy, physiology, ethology, genetics, and many more. All living things share a few key traits, including cellular organization, heritable genetic material and the ability to adapt/evolve, metabolism to regulate energy needs, the...
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The Angiosperm Life Cycle02:39

The Angiosperm Life Cycle

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Plants have a life cycle split between two multicellular stages: a haploid stage—with cells containing one set of chromosomes—and a diploid stage—with cells containing two sets of chromosomes. The haploid stage is the gamete-producing gametophyte, and the diploid stage is the spore-producing sporophyte.
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Initiation of Translation02:33

Initiation of Translation

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Initiating translation is complex because it involves multiple molecules. Initiator tRNA, ribosomal subunits, and eukaryotic initiation factors (eIFs) are all required to assemble on the initiation codon of mRNA. This process consists of several steps that are mediated by different eIFs.
First, the initiator tRNA must be selected from the pool of elongator tRNAs by eukaryotic initiation factor 2 (eIF2). The initiator tRNA (Met-tRNAi) has conserved sequence elements including modified bases at...
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相关实验视频

Updated: Feb 7, 2026

Cell Based Assays of SINEUP Non-coding RNAs That Can Specifically Enhance mRNA Translation
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Cell Based Assays of SINEUP Non-coding RNAs That Can Specifically Enhance mRNA Translation

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翻译生命的物理代码

Benjamin D Knapp1, Kerwyn Casey Huang2

  • 1Biophysics Program, Stanford University, Stanford, CA 94305, USA.

Cell
|July 16, 2018
PubMed
概括

这项研究揭示了控制核糖体度如何影响细胞环境. 这种调节限制了粒子扩散,并影响了真核细胞的相分离.

科学领域:

  • 细胞生物学
  • 生物物理

背景情况:

  • 细胞质是一个拥挤而复杂的细胞环境.
  • 细胞质物理性质的调节对细胞功能至关重要.
  • 特定组件控制这些属性的作用是一个活跃的研究领域.

研究的目的:

  • 研究核糖体度如何影响细胞质的物理性质.
  • 了解mTORC1信号在细胞质拥挤和扩散的调节中的作用.
  • 检查核糖体度对真核细胞内相分化的影响.

主要方法:

  • 使用遗传和生化方法来操纵核糖体度.
  • 使用生物物理技术测量细胞质中的粒子扩散.
  • 在不同的细胞条件下研究阶段分离现象.

主要成果:

  • 证明了mTORC1调节的核糖体度限制了大型细胞质颗粒的扩散.
  • 表明核糖体度直接影响相分离的发生和特征.
  • 建立了核糖体密度和细胞质的整体物理状态之间的联系.

结论:

  • 核糖体度是细胞质物理性质的关键决定因素.

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  • 在调节细胞质扩散和相分离方面,mTORC1信号起着至关重要的作用.
  • 这些发现为真核细胞质的组织和调节提供了新的见解.