In the past year, our core has assisted NHLBI investigators in successfully generating more than one dozen transgenic and knockout mouse lines. One new capability our core has established during this year is the generation of targeted transgenic mouse lines, which is to insert a transgene into a specific genomic locus by co-injecting the transgene with the Phi31 recombinase into the pronuclei of fertilized eggs. We have also succeeded in deriving mouse embryonic stem cell (ESC) and epistem cell (EpiSC) lines from early mouse embryos. Our core has also devoted a substantial portion of our efforts on developing induced pluripotent stem cell (iPSC) related capabilities. We have gained a broad range of skills in this area, including iPSC derivation, random differentiation through embroid body formation and teratoma formation, karyotyping, and directed differentiation into cardiomyocyte and neuronal lineage. We have assisted several laboratories in deriving a number of mouse iPSC lines, and succeeded in deriving iPSC lines from a GFP-expressing transgenic pig. We have also succeeded in targeting reporter genes into a safe harbor locus (AAVS1) of human iPSCs derived from NIH patients. We aslo microinjected mouse iPSCs and hematopoietic stem cells (HSCs) into blastocysts collected from a knockout mouse strain, which is incapable of forming blood lineage. Throughout the year, we have provided numerous consultations and technical assistances to scientists with in and out of NHLBI to assist them in conducting mouse molecular genetic research, including designing DNA constructs, searching database, collecting various stages of embryos, deriving mouse embryonic fibroblasts (MEF), collecting mouse organs, and reconstituting mouse lines using cryopreserved sperm. I am also a member of the NHLBI Animal Care and Use Committee (ACUC) for reviewing animal protocols and conducting animal facility inspections.

Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
2012
Total Cost
$939,275
Indirect Cost
Name
National Heart, Lung, and Blood Institute
Department
Type
DUNS #
City
State
Country
Zip Code
Deis, Jessica A; Guo, Hong; Wu, Yingjie et al. (2018) Lipocalin 2 regulates retinoic acid-induced activation of beige adipocytes. J Mol Endocrinol :
Lin, Yongshun; Liu, Huimin; Klein, Michael et al. (2018) Efficient differentiation of cardiomyocytes and generation of calcium-sensor reporter lines from nonhuman primate iPSCs. Sci Rep 8:5907
Zhang, Yingfan; Liu, Chengyu; Adelstein, Robert S et al. (2018) Replacing nonmuscle myosin 2A with myosin 2C1 permits gastrulation but not placenta vascular development in mice. Mol Biol Cell 29:2326-2335
Jiao, Delong; Cai, Zhenyu; Choksi, Swati et al. (2018) Necroptosis of tumor cells leads to tumor necrosis and promotes tumor metastasis. Cell Res 28:868-870
Zhuang, Lenan; Jang, Younghoon; Park, Young-Kwon et al. (2018) Depletion of Nsd2-mediated histone H3K36 methylation impairs adipose tissue development and function. Nat Commun 9:1796
Xing, Shaojun; Shao, Peng; Li, Fengyin et al. (2018) Tle corepressors are differentially partitioned to instruct CD8+ T cell lineage choice and identity. J Exp Med 215:2211-2226
Liu, Tanbin; Hu, Yi; Guo, Shiyin et al. (2018) Identification and characterization of MYH9 locus for high efficient gene knock-in and stable expression in mouse embryonic stem cells. PLoS One 13:e0192641
Vizcardo, Raul; Klemen, Nicholas D; Islam, S M Rafiqul et al. (2018) Generation of Tumor Antigen-Specific iPSC-Derived Thymic Emigrants Using a 3D Thymic Culture System. Cell Rep 22:3175-3190
Xu, Zhe; Xing, Shaojun; Shan, Qiang et al. (2017) Cutting Edge: ?-Catenin-Interacting Tcf1 Isoforms Are Essential for Thymocyte Survival but Dispensable for Thymic Maturation Transitions. J Immunol 198:3404-3409
Long, Juanjuan; Huang, Chenhui; Chen, Yanyan et al. (2017) Telomeric TERB1-TRF1 interaction is crucial for male meiosis. Nat Struct Mol Biol 24:1073-1080

Showing the most recent 10 out of 65 publications