Recent advances in CRISPR-based functional genomics for the study of disease-associated genetic variants

被引:0
作者
Heon Seok Kim
Jiyeon Kweon
Yongsub Kim
机构
[1] Hanyang University,Department of Life Science, College of Natural Sciences
[2] Hanyang University,Hanyang Institute of Bioscience and Biotechnology
[3] Hanyang University,Hanyang Institute of Advanced BioConvergence
[4] University of Ulsan College of Medicine,Department of Cell and Genetic Engineering, Asan Medical Institute of Convergence Science and Technology, Asan Medical Center
[5] University of Ulsan College of Medicine,Stem Cell Immunomodulation Research Center
来源
Experimental & Molecular Medicine | 2024年 / 56卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Advances in sequencing technology have greatly increased our ability to gather genomic data, yet understanding the impact of genetic mutations, particularly variants of uncertain significance (VUSs), remains a challenge in precision medicine. The CRISPR‒Cas system has emerged as a pivotal tool for genome engineering, enabling the precise incorporation of specific genetic variations, including VUSs, into DNA to facilitate their functional characterization. Additionally, the integration of CRISPR‒Cas technology with sequencing tools allows the high-throughput evaluation of mutations, transforming uncertain genetic data into actionable insights. This allows researchers to comprehensively study the functional consequences of point mutations, paving the way for enhanced understanding and increasing application to precision medicine. This review summarizes the current genome editing tools utilizing CRISPR‒Cas systems and their combination with sequencing tools for functional genomics, with a focus on point mutations.
引用
收藏
页码:861 / 869
页数:8
相关论文
共 159 条
[1]  
Landrum MJ(2016)ClinVar: public archive of interpretations of clinically relevant variants Nucleic Acids Res 44 D862-D868
[2]  
Tate JG(2019)COSMIC: the Catalogue Of Somatic Mutations In Cancer Nucleic Acids Res 47 D941-D947
[3]  
Visscher PM(2017)10 Years of GWAS Discovery: Biology, Function, and Translation Am. J. Hum. Genet 101 5-22
[4]  
Yang J(2011)GCTA: a tool for genome-wide complex trait analysis Am. J. Hum. Genet 88 76-82
[5]  
Lee SH(2023)CRISPR technology: A decade of genome editing is only the beginning Science 379 15644-15649
[6]  
Goddard ME(2013)Efficient genome engineering in human pluripotent stem cells using Cas9 from Neisseria meningitidis Proc. Natl Acad. Sci. USA 110 186-191
[7]  
Visscher PM(2015)In vivo genome editing using Staphylococcus aureus Cas9 Nature 520 759-771
[8]  
Wang JY(2015)Cpf1 is a single RNA-guided endonuclease of a class 2 CRISPR-Cas system Cell 163 950-961
[9]  
Doudna JA(2016)Structure and Engineering of Francisella novicida Cas9 Cell 164 107-117
[10]  
Hou Z(2017)In vivo genome editing with a small Cas9 orthologue derived from Campylobacter jejuni Nat. Commun. 8 e3000686-1138