Efficient generation of Knock-in/Knock-out marmoset embryo via CRISPR/Cas9 gene editing

被引:0
|
作者
Wakako Kumita
Kenya Sato
Yasuhiro Suzuki
Yoko Kurotaki
Takeshi Harada
Yang Zhou
Noriyuki Kishi
Kengo Sato
Atsu Aiba
Yasubumi Sakakibara
Guoping Feng
Hideyuki Okano
Erika Sasaki
机构
[1] Central Institute for Experimental Animals,Department of Molecular Biology and Biochemistry, Graduate School of Medicine
[2] Osaka University,Laboratory of Animal Resources, Center for Disease Biology and Integrative Medicine, Graduate School of Medicine
[3] The University of Tokyo,McGovern Institute for Brain Research, Department of Brain and Cognitive Sciences
[4] Massachusetts Institute of Technology,Laboratory for Marmoset Neural Architecture
[5] RIKEN Center for Brain Science,Department of Biosciences and Informatics
[6] Keio University,Department of Physiology
[7] Keio University School of Medicine,Advanced Research Center
[8] Keio University,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Genetically modified nonhuman primates (NHP) are useful models for biomedical research. Gene editing technologies have enabled production of target-gene knock-out (KO) NHP models. Target-gene-KO/knock-in (KI) efficiency of CRISPR/Cas9 has not been extensively investigated in marmosets. In this study, optimum conditions for target gene modification efficacies of CRISPR/mRNA and CRISPR/nuclease in marmoset embryos were examined. CRISPR/nuclease was more effective than CRISPR/mRNA in avoiding mosaic genetic alteration. Furthermore, optimal conditions to generate KI marmoset embryos were investigated using CRISPR/Cas9 and 2 different lengths (36 nt and 100 nt) each of a sense or anti-sense single-strand oligonucleotide (ssODN). KIs were observed when CRISPR/nuclease and 36 nt sense or anti-sense ssODNs were injected into embryos. All embryos exhibited mosaic mutations with KI and KO, or imprecise KI, of c-kit. Although further improvement of KI strategies is required, these results indicated that CRISPR/Cas9 may be utilized to produce KO/KI marmosets via gene editing.
引用
收藏
相关论文
共 50 条
  • [41] Generation of homozygous Nav1.8 knock-out iPSC lines by CRISPR Cas9 genome editing to investigate a potential new antiarrhythmic strategy
    Maurer, Wiebke
    Hartmann, Nico
    Argyriou, Loukas
    Sossalla, Samuel
    Streckfuss-Boemeke, Katrin
    STEM CELL RESEARCH, 2022, 60
  • [42] CRISPR/Cas9 mediated knock-out of VPREB1 gene induces a cytotoxic effect in myeloma cells
    Khaled, Mai
    Moustafa, Amr S.
    El-Khazragy, Nashwa
    Ahmed, Maha Imam
    Abd Elkhalek, Marwa Ali
    El-Salahy, Eman M.
    PLOS ONE, 2021, 16 (01):
  • [43] KNOCK-OUT OF THE HUMAN ENDOGENOUS RETROVIRUS ERV3 USING CRISPR/CAS9 TECHNOLOGY
    Huebner, Hanna
    Fahlbusch, Fabian B.
    Ekici, Arif B.
    Vasileiou, Georgia
    Beckmann, Matthias W.
    Strick, Reiner
    Ruebner, Matthias
    PLACENTA, 2016, 45 : 107 - 108
  • [44] Generation of Dopamine Transporter (DAT)-mCherry Knock-in Rats by CRISPR-Cas9 Genome Editing
    Matsumoto, Nobuyoshi
    Miyano, Miyuki
    Abe, Takaya
    Kashima, Tetsuhiko
    Kato-Ishikura, Eriko
    Inoue, Ken-ichi
    Liu, Jiayan
    Kiyonari, Hiroshi
    Takeuchi, Haruki
    Ikegaya, Yuji
    BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2024, 47 (02) : 394 - 398
  • [45] Generation and validation of homozygous fluorescent knock-in cells using CRISPR-Cas9 genome editing
    Koch, Birgit
    Nijmeijer, Bianca
    Kueblbeck, Moritz
    Cai, Yin
    Walther, Nike
    Ellenberg, Jan
    NATURE PROTOCOLS, 2018, 13 (06) : 1465 - 1487
  • [46] Targeted knock-in of CreERT2 in zebrafish using CRISPR/Cas9
    Gokul Kesavan
    Juliane Hammer
    Stefan Hans
    Michael Brand
    Cell and Tissue Research, 2018, 372 : 41 - 50
  • [47] Knock-out of GhPDCT with the CRISPR/Cas9 system increases the oleic acid content in cottonseed oil
    Li, Tingwan
    Long, Lu
    Tang, Yingchao
    Xu, Zhongping
    Wang, Guanying
    Jiang, Man
    Jin, Shuangxia
    Gao, Wei
    JOURNAL OF INTEGRATIVE AGRICULTURE, 2024, 23 (10) : 3468 - 3471
  • [48] Optimization of the production of knock-in alleles by CRISPR/Cas9 microinjection into the mouse zygote
    Raveux, Aurelien
    Vandormael-Pournin, Sandrine
    Cohen-Tannoudji, Michel
    SCIENTIFIC REPORTS, 2017, 7
  • [49] Optimization of the production of knock-in alleles by CRISPR/Cas9 microinjection into the mouse zygote
    Aurélien Raveux
    Sandrine Vandormael-Pournin
    Michel Cohen-Tannoudji
    Scientific Reports, 7
  • [50] Knock-In Strategy for Editing Human and Zebrafish Mitochondrial DNA Using Mito-CRISPR/Cas9 System
    Bian, Wan-Ping
    Chen, Yan-Ling
    Luo, Juan-Juan
    Wang, Chao
    Xie, Shao-Lin
    Pei, De-Sheng
    ACS SYNTHETIC BIOLOGY, 2019, 8 (04): : 621 - 632