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相关概念视频

Leaky Scanning02:28

Leaky Scanning

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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...
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Ribosome Profiling02:24

Ribosome Profiling

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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...
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Coordination of Gene Expression Processes in Bacteria01:29

Coordination of Gene Expression Processes in Bacteria

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The DNA replication, transcription, and translation processes are intricately coupled in bacteria, allowing efficient gene expression and rapid protein synthesis. While this physical and functional coordination is advantageous, it introduces challenges that bacteria overcome through specific regulatory mechanisms.Coupling of Replication, Transcription, and TranslationThe coupling of replication, transcription, and translation is a hallmark of bacterial gene expression. As the replisome unwinds...
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Ribosomes01:27

Ribosomes

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Ribosomes translate genetic information encoded by messenger RNA (mRNA) into proteins. Both prokaryotic and eukaryotic cells have ribosomes. Cells that synthesize large quantities of protein—such as secretory cells in the human pancreas—can contain millions of ribosomes.
Ribosome Structure and Assembly
Ribosomes are composed of ribosomal RNA (rRNA) and proteins. In eukaryotes, rRNA is transcribed from genes in the nucleolus—a part of the nucleus that specializes in ribosome...
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Ribosomes01:27

Ribosomes

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Ribosomes translate genetic information encoded by messenger RNA (mRNA) into proteins. Both prokaryotic and eukaryotic cells have ribosomes. Cells that synthesize large quantities of protein—such as secretory cells in the human pancreas—can contain millions of ribosomes.
Ribosome Structure and Assembly
Ribosomes are composed of ribosomal RNA (rRNA) and proteins. In eukaryotes, rRNA is transcribed from genes in the nucleolus—a part of the nucleus that specializes in ribosome...
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The Central Dogma01:20

The Central Dogma

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The central dogma explains the flow of genetic information from DNA nucleotides to the amino acid sequence of proteins.
RNA is the Missing Link Between DNA and Proteins
In the early 1900s, scientists discovered that DNA stores all the information needed for cellular functions and that proteins perform most of these functions. However, the mechanisms of converting genetic information into functional proteins remained unknown for many years. Initially, it was believed that a single gene is...
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相关实验视频

Updated: Mar 6, 2026

Bacterial Peptide Display for the Selection of Novel Biotinylating Enzymes
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Bacterial Peptide Display for the Selection of Novel Biotinylating Enzymes

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通过遗传重编程进行核糖体翻译和显示循环糖的选择.

Jason Johansen-Leete1,2, Yichen Zhong1,2, Beiyuan Cui1,2

  • 1School of Chemistry, The University of Sydney, Sydney NSW 2006, Australia.

Journal of the American Chemical Society
|March 4, 2026
PubMed
概括

研究人员开发了一种新的方法,通过使用柔性酶介导的遗传重编程将甘氨基酸纳入蛋白质中. 这使得能够发现具有抗血小板和溶酶体贩运活动的新型糖类药物.

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Residue-Specific Exchange of Proline by Proline Analogs in Fluorescent Proteins: How "Molecular Surgery" of the Backbone Affects Folding and Stability
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Residue-Specific Exchange of Proline by Proline Analogs in Fluorescent Proteins: How "Molecular Surgery" of the Backbone Affects Folding and Stability

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Optimizing the Genetic Incorporation of Chemical Probes into GPCRs for Photo-crosslinking Mapping and Bioorthogonal Chemistry in Live Mammalian Cells
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相关实验视频

Last Updated: Mar 6, 2026

Bacterial Peptide Display for the Selection of Novel Biotinylating Enzymes
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Residue-Specific Exchange of Proline by Proline Analogs in Fluorescent Proteins: How "Molecular Surgery" of the Backbone Affects Folding and Stability
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Optimizing the Genetic Incorporation of Chemical Probes into GPCRs for Photo-crosslinking Mapping and Bioorthogonal Chemistry in Live Mammalian Cells
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科学领域:

  • 生物化学 生物化学
  • 合成生物学 合成生物学
  • 药物发现 药物发现 药物发现

背景情况:

  • 核糖体蛋白质合成在结合非天然氨基酸方面是有限的.
  • 基因重编程为扩大蛋白质合成工具箱提供了一个潜在的解决方案.

研究的目的:

  • 开发一种可靠的方法,用于糖系氨基酸的核糖体内合并.
  • 将这种方法应用于发现基于糖的新疗法.

主要方法:

  • 通过flexizyme介导的重编程,通过glycosyl-dipeptides启动AUG编码子.
  • 在体外的mRNA显示器用于新的图书馆选择.
  • 对已识别的糖的生物活性进行表征.

主要成果:

  • 葡萄糖氨基酸的成功核糖体内结合.
  • 发现了α-l-fucosylated循环可以抑制P-选择因抗血小板活性.
  • 发现含有β-d-N-乙银胺的循环糖激活ASGPR用于溶酶体贩运.

结论:

  • 开发的方法是一个强大的平台,用于新的糖联体发现.
  • 这扩大了基因重编程能力,用于大,复杂的修改核糖体翻译.