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  • 1
    Publication Date: 2012-11-29
    Description: Myd88 is an important adaptor molecule for the activation of NADPH oxidase and arginase-1, which are responsible for the suppressive function of myeloid-derived suppressor cells (MDSCs). When wild-type and Myd88 −/− mice were subcutaneously injected with CT26 colon cancer cells expressing human Her-2/neu, tumor growth was retarded in Myd88 −/− mice than in wild-type mice. Although the generation of CD11b + Gr-1 + MDSCs was less in Myd88 −/− mice than in wild-type mice, Myd88 −/− mice having tumor masses still had significant quantities of MDSCs, suggesting that MDSC generation might be independent of Myd88 signaling. However, MDSCs obtained from tumor-bearing Myd88 −/− mice failed to suppress antigen-specific proliferation of CD8 + T cells and CD4 + T cells, whereas MDSCs from wild-type mice significantly suppressed both types of T cells. Consistent with this, we found that the levels of costimulatory molecules and MHC class II were significantly increased in MDSCs obtained from Myd88 −/− mice compared to wild-type mice after tumor challenge. Furthermore, CD4 + T cells residing in tumor-draining lymph nodes of Myd88 −/− mice secreted more TNF-α than those of wild-type mice. Finally, the blockade of Myd88 signaling by treatment with Myd88 inhibitory peptide, during later tumor stages, significantly inhibited the growth of immunogenic tumors. Overall, these data suggest that signaling through the Myd88 adaptor molecule is critical for the direct suppressive function of MDSCs, and approaches to block Myd88-mediated signaling in MDSCs might be effective to inhibit the immunosuppressive function of MDSCs. © 2012 Wiley Periodicals, Inc.
    Print ISSN: 0020-7136
    Electronic ISSN: 1097-0215
    Topics: Biology , Medicine
    Published by Wiley-Blackwell
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  • 2
    Publication Date: 2014-01-24
    Description: ABSTRACT A series of cinchona alkaloid-ester derivatives was synthesized and applied to catalyze the enantioselective oxaziridination of aryl aldimines with m -CPBA. The ( R,R )-oxaziridines were obtained in good yields with high enantiomeric excess (ee) values (up to 98%). Chirality 00:000–000, 2014 . © 2014 Wiley Periodicals, Inc.
    Print ISSN: 0899-0042
    Electronic ISSN: 1520-636X
    Topics: Chemistry and Pharmacology
    Published by Wiley-Blackwell
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  • 3
    Publication Date: 2014-10-08
    Description: Regulation of extracellular matrix (ECM) components is essential for tissue homeostasis and function. We screened a small peptide that induces ECM protein synthesis for its usefulness in protecting keratinocytes. In this report, we demonstrate that myristoyl tetrapeptide Ala-Ala-Pro-Val (mAAPV) stimulates the expression of ECM proteins and inhibits the expression of metalloproteinases (MMPs) that degrade ECM proteins in Hs68 human fibroblast cells. In order to elucidate the underlying molecular mechanisms for the effects of mAAVP, we investigated the changes in gene expression in the presence of mAAPV using a cDNA microarray. Treatment with mAAPV resulted in decreased expression of MMP-related genes such as MMP1 , MMP3 , TIMP1 and TIMP3 and increased expression of collagen genes, including COL1A1 , COL1A2 , COL3A1 , COL5A1 and COL6A3 . The pattern of gene expression regulated by mAAPV was very similar to that of gene expression induced by transforming growth factor (TGF)- β , indicating that the TGF- β signaling pathway is crucial for simultaneous activation of several ECM-related genes by mAAPV. We examined whether the activation of SMAD, a downstream protein of TGF- β receptor, is involved in the signal transduction pathway induced by mAAPV. The results demonstrate that mAAVP directly activates SMAD2 and induces SMAD3 to bind to DNA. In conclusion, our results demonstrate that mAAPV both enhances the expression of collagen and inhibits its degradation via production of protease inhibitors that prevent enzymatic breakdown of the ECM. The results suggest that mAAPV would be a useful ECM-protecting agent. Copyright © 2014 John Wiley & Sons, Ltd.
    Print ISSN: 0263-6484
    Electronic ISSN: 1099-0844
    Topics: Biology , Medicine
    Published by Wiley-Blackwell
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