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相关概念视频

Initiation of Translation02:33

Initiation of Translation

33.8K
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...
33.8K
Lagging Strand Synthesis01:59

Lagging Strand Synthesis

52.5K
During replication, the complementary strands in double-stranded DNA are synthesized at different rates. Replication first begins on the leading strand. Replication starts later, occurs more slowly, and proceeds discontinuously on the lagging strand.
There are several major differences between synthesis of the leading strand and synthesis of the lagging strand. 1) Leading strand synthesis happens in the direction of replication fork opening, whereas lagging strand synthesis happens in the...
52.5K
Translation in Prokaryotes01:29

Translation in Prokaryotes

22
Prokaryote translation is a complex, highly coordinated process that converts genetic information from mRNA into functional proteins. It involves three stages: initiation, elongation, and termination, each facilitated by specific molecular components.Initiation of TranslationThe process begins with the assembly of the ribosomal subunits and initiation factors on the mRNA. In bacteria, the 30S ribosomal subunit recognizes the Shine-Dalgarno sequence in the mRNA, a conserved region upstream of...
22
Leaky Scanning02:28

Leaky Scanning

5.1K
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...
5.1K
From DNA to Protein03:06

From DNA to Protein

18.5K
The flow of genetic information in cells from DNA to mRNA to protein is described by the central dogma, which states that genes specify the sequence of mRNAs, which in turn specify the sequence of amino acids making up all proteins. The decoding of one molecule to another is performed by specific proteins and RNAs. Because the information stored in DNA is so central to cellular function, it makes intuitive sense that the cell would make mRNA copies of this information for protein synthesis...
18.5K
Improving Translational Accuracy02:07

Improving Translational Accuracy

11.3K
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...
11.3K

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相关实验视频

Updated: Jul 11, 2025

Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids
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Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids

Published on: September 21, 2017

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第一个核酸链可能是通过原始反向翻译在上生长的.

Arturo Tozzi1, Marco Mazzeo2

  • 1Center for Nonlinear Science, Department of Physics, University of North Texas, 1155 Union Circle, #311427, Denton, TX, 76203-5017, USA. tozziarturo@libero.it.

Acta biotheoretica
|November 10, 2023
PubMed
概括

原始可能指导了早期核酸的形成,提出了蛋白质为生命的第一个起源. 这种"反向翻译"表明,在当前的遗传密码之前,质模板RNA合成.

科学领域:

  • 生命的起源 生命的起源
  • 益生菌化学 益生菌化学
  • 分子进化分子进化

背景情况:

  • 中心教条描述了DNA到蛋白质信息通过RNA流动.
  • 其他假设探索早期生命的化学起源超越RNA世界.
  • 在哈迪地球上生物分子的可用性是一个关键考虑因素.

研究的目的:

  • 为生物聚合物的起源提出一种蛋白质第一情景.
  • 引入"选择性氨基酸和核酸匹配的寡" (SANMAOs) 概念作为前生物模板.
  • 探索从酸到核酸的"逆转换"的可信性.

主要方法:

  • 预生态条件和生物分子可用性的理论分析.
  • 提出了一种具有双重结合能力的新型类 (SANMAOs).
  • 核酸聚合物的SANMAO介导模板的理论建模.

主要成果:

  • 假设的SANMAO可以非共地结合氨基酸和核酸.
  • 一个理论模型演示了一个聚-甘氨酸模板纯素链 (GGG码子).
  • SANMAO可以促进早期,低保真性RNA聚合物的形成.
关键词:
核酸三酸盐核酸三酸盐生命的起源 生命的起源聚类是一种多类.益生菌前生物化学世界RNA世界RNA世界

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DNA Sequence Recognition by DNA Primase Using High-Throughput Primase Profiling
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DNA Sequence Recognition by DNA Primase Using High-Throughput Primase Profiling

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Chemical Triphosphorylation of Oligonucleotides
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Chemical Triphosphorylation of Oligonucleotides

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相关实验视频

Last Updated: Jul 11, 2025

Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids
09:04

Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids

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DNA Sequence Recognition by DNA Primase Using High-Throughput Primase Profiling

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Chemical Triphosphorylation of Oligonucleotides

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结论:

  • 蛋白质第一模型为RNA世界假设提供了一个替代方案.
  • SANMAO提供了一个可信的机制,用于模拟早期的核酸合成.
  • 这一框架暗示了现代遗传系统之前的古老的"反向翻译".