TY - JOUR
T1 - PTD-hFOXP3 protein acts as an immune regulator to convert human CD4 +CD25- T cells to regulatory T-like cells
AU - Liu, Xia
AU - Xu, Xun
AU - Lin, Xin
AU - Tian, Yuxiang
AU - Ji, Baoju
AU - Xia, Sheng
AU - Xu, Sanrong
AU - Yin, Qing
AU - Zhang, Miaomiao
AU - Jiao, Zhijun
AU - Wang, Shengjun
AU - Xu, Huaxi
AU - Shao, Qixiang
PY - 2012/12
Y1 - 2012/12
N2 - Regulatory T cells (Tregs) are critical for maintaining self-tolerance and homeostasis, and have potential application in clinical disease therapy, such as autoimmune diseases and transplant rejection, but their numbers are limited. FOXP3 is a key transcription factor controlling Tregs development and function. Although transfection of CD4+CD25- lymphocytes with the FOXP3 gene can convert them to Treg-like cells, there is the risk of insertional mutagenesis and thus an alternative to genetic intervention is sought. The protein transduction domain (PTD) from the HIV transactivator of transcription is a useful tool to deliver protein to the cytoplasm and nucleus. In this study, we generated a fusion protein linking the human FOXP3 to PTD (PTD-hFOXP3), and explored its function in T cells. The results showed that the PTD rapidly and effectively delivered the hFOXP3 protein into cells where it localized not only in the cytoplasm, but also to the nucleus. PTD-hFOXP3-transduced Jurkat cells (human T lymphoma cell line) and CD4+CD25- T cells failed to proliferate and produce IL-2 and IFN-Î, but produced large amounts of the cytokines IL-4, IL-10, and TGF-β, in response to TCR stimulation in vitro. PTD-hFOXP3-transduced CD4+CD25- T cells also expressed high levels of CTLA-4 and low levels of CD25 after stimulation. Most importantly, PTD-hFOXP3-transduced T cells inhibited the proliferation of activated CD4+CD25- T cells. Furthermore, chromatin immunoprecipitation assays demonstrated that PTD-hFOXP3 can bind with the IL-2 gene promoter and repress the expression of IL-2. These results indicate that PTD-hFOXP3 has the capability to convert conventional T cells to Treg-like cells.
AB - Regulatory T cells (Tregs) are critical for maintaining self-tolerance and homeostasis, and have potential application in clinical disease therapy, such as autoimmune diseases and transplant rejection, but their numbers are limited. FOXP3 is a key transcription factor controlling Tregs development and function. Although transfection of CD4+CD25- lymphocytes with the FOXP3 gene can convert them to Treg-like cells, there is the risk of insertional mutagenesis and thus an alternative to genetic intervention is sought. The protein transduction domain (PTD) from the HIV transactivator of transcription is a useful tool to deliver protein to the cytoplasm and nucleus. In this study, we generated a fusion protein linking the human FOXP3 to PTD (PTD-hFOXP3), and explored its function in T cells. The results showed that the PTD rapidly and effectively delivered the hFOXP3 protein into cells where it localized not only in the cytoplasm, but also to the nucleus. PTD-hFOXP3-transduced Jurkat cells (human T lymphoma cell line) and CD4+CD25- T cells failed to proliferate and produce IL-2 and IFN-Î, but produced large amounts of the cytokines IL-4, IL-10, and TGF-β, in response to TCR stimulation in vitro. PTD-hFOXP3-transduced CD4+CD25- T cells also expressed high levels of CTLA-4 and low levels of CD25 after stimulation. Most importantly, PTD-hFOXP3-transduced T cells inhibited the proliferation of activated CD4+CD25- T cells. Furthermore, chromatin immunoprecipitation assays demonstrated that PTD-hFOXP3 can bind with the IL-2 gene promoter and repress the expression of IL-2. These results indicate that PTD-hFOXP3 has the capability to convert conventional T cells to Treg-like cells.
KW - CYTOKINES
KW - PROLIFERATION
KW - PTD-HFOXP3
KW - REGULATORY T CELLS
KW - TREG-LIKE CELLS
UR - http://www.scopus.com/inward/record.url?scp=84867495893&partnerID=8YFLogxK
U2 - 10.1002/jcb.24255
DO - 10.1002/jcb.24255
M3 - Article
C2 - 22806628
AN - SCOPUS:84867495893
SN - 0730-2312
VL - 113
SP - 3797
EP - 3809
JO - Journal of cellular biochemistry
JF - Journal of cellular biochemistry
IS - 12
ER -