Literature DB >> 19515406

Removal of selectable marker gene from fibroblast cells in transgenic cloned cattle by transient expression of Cre recombinase and subsequent effects on recloned embryo development.

S Wang1, X Sun, F Ding, K Zhang, R Zhao, S Li, R Li, B Tang, L Zhang, Y Liu, J Li, F Gao, H Wang, L Wang, Y Dai, N Li.   

Abstract

Introduction of selectable marker genes to transgenic animals could create an inconvenience to further research and may exaggerate public concerns regarding biological safety. The objective of the current study was to excise loxP flanked neo(R) in transgenic cloned cattle by transient expression of Cre recombinase. Green fluorescent protein gene (GFP) was incorporated to monitor Cre expression; therefore, Cre-expressed cells could be selected indirectly by fluorescence-activated cell sorting (FACS). The neo(R) was removed and Cre expressed transiently in GFP-positive colonies; excision of neo(R) was confirmed by single-blastocyst PCR in recloned blastocysts, with neo(R)-free fibroblast cells as donors. There was no difference (P>0.05) in rates of cleavage (76.0% vs. 68.8%) or blastocyst formation (56.6% vs. 52.9%) between recloned embryos with neo(R)-free or neo(R)-included donors. The differential staining of recloned blastocysts were similar (P >0.05) in terms of total cell number (124 vs. 122) and the ratio of ICM (Inner Cell Mass) to the total cell number (38.1% vs. 38.2%). Furthermore, pregnancy and calving rates were not different (P>0.05) from those of the control. In conclusion, we successfully excised neo(R) from transgenic cloned cattle; the manipulation did not affect the developmental competence of recloned preimplantation embryos. This approach should benefit bioreactor and transgenic research in livestock.

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Year:  2009        PMID: 19515406     DOI: 10.1016/j.theriogenology.2009.04.009

Source DB:  PubMed          Journal:  Theriogenology        ISSN: 0093-691X            Impact factor:   2.740


  6 in total

Review 1.  Exogenous enzymes upgrade transgenesis and genetic engineering of farm animals.

Authors:  Pablo Bosch; Diego O Forcato; Fabrisio E Alustiza; Ana P Alessio; Alejandro E Fili; María F Olmos Nicotra; Ana C Liaudat; Nancy Rodríguez; Thirumala R Talluri; Wilfried A Kues
Journal:  Cell Mol Life Sci       Date:  2015-02-01       Impact factor: 9.261

2.  A site-specific recombinase-based method to produce antibiotic selectable marker free transgenic cattle.

Authors:  Yuan Yu; Yongsheng Wang; Qi Tong; Xu Liu; Feng Su; Fusheng Quan; Zekun Guo; Yong Zhang
Journal:  PLoS One       Date:  2013-05-01       Impact factor: 3.240

3.  Efficient gene knockout in goats using CRISPR/Cas9 system.

Authors:  Wei Ni; Jun Qiao; Shengwei Hu; Xinxia Zhao; Misha Regouski; Min Yang; Irina A Polejaeva; Chuangfu Chen
Journal:  PLoS One       Date:  2014-09-04       Impact factor: 3.240

4.  Isozygous and selectable marker-free MSTN knockout cloned pigs generated by the combined use of CRISPR/Cas9 and Cre/LoxP.

Authors:  Yanzhen Bi; Zaidong Hua; Ximei Liu; Wenjun Hua; Hongyan Ren; Hongwei Xiao; Liping Zhang; Li Li; Zhirui Wang; Götz Laible; Yan Wang; Faming Dong; Xinmin Zheng
Journal:  Sci Rep       Date:  2016-08-17       Impact factor: 4.379

5.  Large-scale production of functional human lysozyme from marker-free transgenic cloned cows.

Authors:  Dan Lu; Shen Liu; Fangrong Ding; Haiping Wang; Jing Li; Ling Li; Yunping Dai; Ning Li
Journal:  Sci Rep       Date:  2016-03-10       Impact factor: 4.379

6.  CRISPR/Cas9-Mediated Specific Integration of Fat-1 and IGF-1 at the pRosa26 Locus.

Authors:  Wenni You; Mengjing Li; Yilin Qi; Yanbing Wang; Yiwu Chen; Ying Liu; Li Li; Hongsheng Ouyang; Daxin Pang
Journal:  Genes (Basel)       Date:  2021-07-01       Impact factor: 4.096

  6 in total

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