| Literature DB >> 22694797 |
Yi Tian1, Guoqiang Wu, Jun-Chao Xing, Jun Tang, Yi Zhang, Ze-Min Huang, Zheng-Cai Jia, Ren Zhao, Zhi-Qiang Tian, Shu-Feng Wang, Xiao-Ling Chen, Li Wang, Yu-Zhang Wu, Bing Ni.
Abstract
BACKGROUND: Regulatory T cells (Tregs) are required for proper maintenance of immunological self-tolerance and immune homeostasis. Folate receptor 4 (FR4) is expressed at high levels in transforming growth factor-beta (TGF-β)-induced Tregs and natural Tregs. Moreover, antibody-mediated targeting of FR4 is sufficient to mediate Treg depletion.Entities:
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Year: 2012 PMID: 22694797 PMCID: PMC3724506 DOI: 10.1186/1471-2172-13-30
Source DB: PubMed Journal: BMC Immunol ISSN: 1471-2172 Impact factor: 3.615
Figure 1Identification of a novel truncated FR4 variant from BALB/c mouse splenocytes. (A) Schematic diagram of the mouse FR4 gene. Exons are indicated by solid lines, and introns by dashed lines. Positions of primers used for PCR amplification are shown by arrows. (B) RT-PCR detection of full-length CDS of FR4 and FR4D3 genes in mouse splenocytes. (C) RT-PCR detection of FR4 and FR4D3 mRNA in splenocytes, CD4+ T cells, and CD4+CD25+ T cells. (D) The nucleotide and predicted amino acid sequences of the novel mouse FR4D3 CDS. The 189 bp exon 3 was deleted and did not cause frame shift mutation. The exons are indicated in bold and the exon-exon junction sites are indicated by arrows. (E) Western blotting assay showing FR4 and FR4D3 proteins detected by rat anti-mouse FR4 monoclonal antibody (mAb). Here, 50 μg splenocyte lysates were treated with N-glycosidase before blotting [15].
Figure 2Expression of the novel FR4variant in splenic T cell sub populations. (A) Isolation and purity (%) of splenic T cell subpopulations. (B) Purity of Foxp3-positive cells in isolated CD4+CD25+ T cells. (C) FR4D3 protein expression in particular T cell subsets was detected by Western blotting assay using anti-mouse FR4 mAb . Here, 10 μg of total cell extracts was treated with N-glycosidase before blotting. β-actin protein was detected as an internal control.
Figure 3Proliferation of sorted CD4CD25Tregs. (A) Overexpression of FR4 or FR4D3 protein in sorted CD4+CD25+ Tregs. Wt, wild type cells; Over-FR4, overexpression of FR4; Over-FR4D3, overexpression of FR4D3. Each column represents the intensity abundance ratio of the FR4 or FR4D3 band versus the actin band in each lane. Panels show a representative of three independent experiments. Error bars represent the standard deviation from three independent experiments. *, P < 0.05, vs. wild type cells. (B) FA dose-response of Tregs’ proliferation. The CD4+CD25+ Tregs were stimulated with various concentrations of FA (0, 2, 4, 6, 8, 10 ng/mL) in the presence of IL-2, anti-CD3/anti-CD28 (pre-coated and soluble, respectively). Panels show a representative of three independent experiments. Error bars represent the standard deviation from triplicate wells.*, P < 0.05 vs. untreated cells. (C) The FR4 or FR4D3 CDS was cloned directly into the pCI-neo vector and transiently transfected into FACS-sorted CD4+CD25+ Tregs, followed by stimulation with or without combinations of FA, IL-2, and anti-CD3/anti-CD28 (pre-coated and soluble, respectively). Wt represents no overexpression of either FR4 or FR4D3; FR4 represents the overexpression of FR4; FR4D3 represents the overexpression of FR4D3. Panels show a representative of three independent experiments. Error bars represent the standard deviation from triplicate wells. *, P < 0.05.