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相关概念视频

Conservative Site-specific Recombination and Phase Variation02:53

Conservative Site-specific Recombination and Phase Variation

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Because the DNA segments are cut and reorganized in a direction-specific manner, site-specific recombination has emerged as an efficient genetic engineering technique. Flippase and Cyclization recombinases or Flp and Cre, respectively, are two members of the tyrosine recombinase family derived from bacteriophages, that are used to mediate site-specific DNA insertions, deletions, and targeted expression of proteins in mammalian cell lines.
The recognition sites for Cre recombinase called LoxP...
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The Central Dogma01:20

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The central dogma explains the flow of genetic information from DNA nucleotides to the amino acid sequence of proteins.
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Overview
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Genome editing technologies allow scientists to modify an organism’s DNA via the addition, removal, or rearrangement of genetic material at specific genomic locations. These types of techniques could potentially be used to cure genetic disorders such as hemophilia and sickle cell anemia. One popular and widely used DNA-editing research tool that could lead to safe and effective cures for genetic disorders is the CRISPR-Cas9 system. CRISPR-Cas9 stands for Clustered Regularly Interspaced...
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Nuclear reprogramming is a process of transforming one cell type into an unrelated cell type by epigenetic changes that alter the cell’s original gene expression pattern. Such epigenetic changes force cells to express a different set of genes, which play a significant role in inducing transformation into other cell types. Nuclear reprogramming offers applications in reproductive cloning for livestock propagation and regenerative medicine — developing patient-specific cells for...
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Other than maintaining genome stability via DNA repair, homologous recombination plays an important role in diversifying the genome. In fact, the recombination of sequences forms the molecular basis of genomic evolution. Random and non-random permutations of genomic sequences create a library of new amalgamated sequences. These newly formed genomes can determine the fitness and survival of cells. In bacteria, homologous and non-homologous types of recombination lead to the evolution of new...
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相关实验视频

Updated: Jun 9, 2025

CRISPR Epigenome Editing in Human Cells using Plasmid DNA Transfection and mRNA Nucleofection Delivery
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重编程基因代码使用flexizymes.

Takayuki Katoh1, Hiroaki Suga2

  • 1Department of Chemistry, Graduate School of Science, University of Tokyo, Tokyo, Japan. katoh@chem.s.u-tokyo.ac.jp.

Nature reviews. Chemistry
|October 21, 2024
PubMed
概括

柔性酶是可适应的核糖酶,可以创建用于遗传代码重编程的非蛋白质性氨基酸转移RNA (tRNA). 这项技术允许通过将各种氨基酸纳入核糖体翻译来合成独特的和蛋白质.

科学领域:

  • 合成生物学 合成生物学
  • 分子生物学分子生物学
  • 生物化学 生物化学

背景情况:

  • 正规的遗传密码将61个感官密码分配给20个蛋白质原性氨基酸.
  • 非蛋白质原性氨基酸 (npAAs) 的核糖体内结合是通过基因编码操纵技术进行的.
  • 氨基酸转移RNAs (tRNAs) 对于将信使RNA (mRNA) 转化为来说至关重要,通过反来识别.

研究的目的:

  • 审查flexizymes的发展,结构,机制和应用.
  • 要突出flexizymes在为遗传代码重编程准备多种氨基酸tRNA的能力.
  • 以展示使用flexizyme介导的npAA整合的独特和蛋白质的合成.

主要方法:

  • 柔性酶是可适应的氨基化 рибо酶,用于制备各种氨基-tRNA.
  • 柔性体利用氨基酸与合适的离开组激活,并需要一个芳香环识别.
  • 该系统容纳L-α-氨基酸与侧链修改和骨干修改的npAAs.

主要成果:

  • 柔性酶使几乎任何氨基酸可以充电到任何tRNA上.
  • 柔性酶系统克服了天然氨基酸-tRNA合成酶 (ARS) 的特异性限制.
  • 这种方法通过遗传代码重编程促进了和蛋白质与npAAs的合成.

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Efficient PAM-Less Base Editing for Zebrafish Modeling of Human Genetic Disease with zSpRY-ABE8e
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结论:

  • 柔性酶是扩大蛋白质合成中的氨基酸谱的多功能工具.
  • 该技术允许创建具有量身定制属性的新和蛋白质.
  • 柔性体有助于推进遗传代码重编程,用于生物技术及其他领域的各种应用.