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相关概念视频

CRISPR and crRNAs02:53

CRISPR and crRNAs

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Bacteria and archaea are susceptible to viral infections just like eukaryotes; therefore, they have developed a unique adaptive immune system to protect themselves. Clustered regularly interspaced short palindromic repeats and CRISPR-associated proteins (CRISPR-Cas) are present in more than 45% of known bacteria and 90% of known archaea.
The CRISPR-Cas system stores a copy of foreign DNA in the host genome and uses it to identify the foreign DNA upon reinfection. CRISPR-Cas has three different...
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CRISPR01:59

CRISPR

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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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Homologous Recombination02:31

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The basic reaction of homologous recombination (HR) involves two chromatids that contain DNA sequences sharing a significant stretch of identity. One of these sequences uses a strand from another as a template to synthesize DNA in an enzyme-catalyzed reaction. The final product is a novel amalgamation of the two substrates. To ensure an accurate recombination of sequences, HR is restricted to the S and G2 phases of the cell cycle. At these stages, the DNA has been replicated already and the...
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Conservative Site-specific Recombination and Phase Variation02:53

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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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相关实验视频

Updated: May 12, 2025

Gene Digital Circuits Based on CRISPR-Cas Systems and Anti-CRISPR Proteins
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Gene Digital Circuits Based on CRISPR-Cas Systems and Anti-CRISPR Proteins

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克里斯普尔-Cas系统:一个功能视角和创新.

Carla Navarro1, María P Díaz1, Pablo Duran1

  • 1Endocrine and Metabolic Diseases Research Center, School of Medicine, University of Zulia, Maracaibo 40001, Venezuela.

International journal of molecular sciences
|May 7, 2025
PubMed
概括

聚类的定期间隔的短平行列重复 (CRISPR) 和相关的蛋白质 (Cas) 提供了对病毒的适应性免疫力. 本综述详细介绍了CRISPR-Cas机制和生物技术应用,用于未来的研究.

关键词:
这就是CRISPR-Cas.基因编辑 基因编辑基因治疗的基因疗法

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科学领域:

  • 进化生物学是进化的生物学.
  • 微生物学 微生物学
  • 免疫学 免疫学 免疫学

背景情况:

  • 适应对于 prokaryotic 的生存至关重要.
  • 聚类的定期间隔的短平行列重复 (CRISPR) 和相关的蛋白质 (Cas) 在细菌和古生物中形成了适应性免疫系统.
  • 通过整合病毒DNA片段,CRISPR-Cas赋予了对病毒感染的抵抗力.

研究的目的:

  • 分析CRISPR-Cas系统的详细作用机制.
  • 总结了开发基于CRISPR-Cas的生物技术工具的进展.
  • 突出CRISPR-Cas技术的治疗潜力和未来研究方向.

主要方法:

  • 关于CRISPR-Cas系统的文学评论.
  • 分子机制的分析.
  • 生物技术应用和进步的总结.

主要成果:

  • 克里斯普尔-卡斯系统通过病毒感染的分子记忆来提供适应性免疫力.
  • 病毒DNA片段的整合使得针对性地应对随后的挑战成为可能.
  • 克里斯普尔-Cas已经发展成为具有临床意义的新生物技术工具.

结论:

  • 对CRISPR-Cas机制的全面理解是必不可少的.
  • 克里斯普尔-卡斯技术为生物技术和治疗应用提供了巨大的潜力.
  • 需要进一步的研究来探索CRISPR-Cas系统的全部功能.