Genome editing: a robust technology for human stem cells

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초록

Human pluripotent stem cells comprise induced pluripotent and embryonic stem cells, which have tremendous potential for biological and therapeutic applications. The development of efficient technologies for the targeted genome alteration of stem cells in disease models is a prerequisite for utilizing stem cells to their full potential. Genome editing of stem cells is possible with the help of synthetic nucleases that facilitate site-specific modification of a gene of interest. Recent advances in genome editing techniques have improved the efficiency and speed of the development of stem cells for human disease models. Zinc finger nucleases, transcription activator- like effector nucleases, and clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated system are powerful tools for editing DNA at specific loci. Here, we discuss recent technological advances in genome editing with site-specific nucleases in human stem cells.

키워드

Induced pluripotent stem cellsEmbryonic stem cellsZinc finger nucleasesTranscription activator-like effector nucleasesClustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated systemZINC-FINGER NUCLEASESDOUBLE-STRAND BREAKSHUMAN HEMATOPOIETIC STEMTAL EFFECTOR NUCLEASESDNA-BINDING SPECIFICITYGENE CORRECTIONHOMOLOGOUS RECOMBINATIONCRISPR-CAS9 NUCLEASESLENTIVIRAL VECTORHUMAN BLASTOCYSTS
제목
Genome editing: a robust technology for human stem cells
저자
Chandrasekaran, Arun, PandianSong, MinjungRamakrishna, Suresh
DOI
10.1007/s00018-017-2522-0
발행일
2017-09
유형
Review
저널명
Cellular and Molecular Life Sciences
74
18
페이지
3335 ~ 3346