通过基于 CRISPR 的寡核苷酸重组工程优先确定抗菌药物靶标

通过基于 CRISPR 的寡核苷酸重组工程优先确定抗菌药物靶标

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演讲者
Matthew Child
Matthew Child
伦敦帝国理工学院团队负责人
RECORDED AT Writing the Future of Infectious Disease

本次网络研讨会中涵盖的内容
开发基于 CRISPR 的寡核苷酸重组工程 (CORe),用于根据对蛋白功能的贡献对反应性 AA 进行优先排序
CORe 如何将蛋白序列和功能与生物适应度相结合,从而超越传统的遗传工作流程效率
结果包括发现了修饰顶复门原虫刚地弓形虫的核糖体的反应性半胱氨酸

Chemoproteomic technologies can mine chemically-accessible amino acids via intrinsic reactivity toward electrophilic probes. However these approaches cannot discern which reactive residues contribute to protein function and therefore prioritize for drug discovery. 

In this webinar:

  • Development of CRISPR-based Oligo Recombineering (CORe) to systematically prioritize reactive amino acids according to their contribution to protein function.
  • How CORe couples protein sequence and function with biological fitness, outperforming traditional genetic workflow efficiency by orders-of-magnitude.
  • Results including discovery of reactive cysteines decorating the ribosome of apicomplexan parasite Toxoplasma gondii that were found to be critical for parasite growth, with target-based screening validating apicomplexan translation machinery as a novel target for covalent ligand development.


 

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