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Francisco, Loise

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Francisco

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Loise

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Francisco, Loise

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Now showing 1 - 3 of 3
  • Publication

    RGMb is a novel binding partner for PD-L2 and its engagement with PD-L2 promotes respiratory tolerance

    (The Rockefeller University Press, 2014) Xiao, Yanping; Yu, Sanhong; Zhu, Baogong; Bedoret, Denis; Bu, Xia; Francisco, Loise; Hua, Ping; Duke-Cohan, Jonathan; Umetsu, Dale T.; Sharpe, Arlene; DeKruyff, Rosemarie H.; Freeman, Gordon

    We report that programmed death ligand 2 (PD-L2), a known ligand of PD-1, also binds to repulsive guidance molecule b (RGMb), which was originally identified in the nervous system as a co-receptor for bone morphogenetic proteins (BMPs). PD-L2 and BMP-2/4 bind to distinct sites on RGMb. Normal resting lung interstitial macrophages and alveolar epithelial cells express high levels of RGMb mRNA, whereas lung dendritic cells express PD-L2. Blockade of the RGMb–PD-L2 interaction markedly impaired the development of respiratory tolerance by interfering with the initial T cell expansion required for respiratory tolerance. Experiments with PD-L2–deficient mice showed that PD-L2 expression on non–T cells was critical for respiratory tolerance, but expression on T cells was not required. Because PD-L2 binds to both PD-1, which inhibits antitumor immunity, and to RGMb, which regulates respiratory immunity, targeting the PD-L2 pathway has therapeutic potential for asthma, cancer, and other immune-mediated disorders. Understanding this pathway may provide insights into how to optimally modulate the PD-1 pathway in cancer immunotherapy while minimizing adverse events.

  • Publication

    The PTEN pathway in Tregs is a critical driver of the suppressive tumor microenvironment

    (American Association for the Advancement of Science, 2015) Sharma, Madhav D.; Shinde, Rahul; McGaha, Tracy L.; Huang, Lei; Holmgaard, Rikke B.; Wolchok, Jedd D.; Mautino, Mario R.; Celis, Esteban; Sharpe, Arlene; Francisco, Loise; Powell, Jonathan D.; Yagita, Hideo; Mellor, Andrew L.; Blazar, Bruce R.; Munn, David H.

    The tumor microenvironment is profoundly immunosuppressive. We show that multiple tumor types create intratumoral immune suppression driven by a specialized form of regulatory T cell (Treg) activation dependent on the PTEN (phosphatase and tensin homolog) lipid phosphatase. PTEN acted to stabilize Tregs in tumors, preventing them from reprogramming into inflammatory effector cells. In mice with a Treg-specific deletion of PTEN, tumors grew slowly, were inflamed, and could not create an immunosuppressive tumor microenvironment. In normal mice, exposure to apoptotic tumor cells rapidly elicited PTEN-expressing Tregs, and PTEN-deficient mice were unable to maintain tolerance to apoptotic cells. In wild-type mice with large established tumors, pharmacologic inhibition of PTEN after chemotherapy or immunotherapy profoundly reconfigured the tumor microenvironment, changing it from a suppressive to an inflammatory milieu, and tumors underwent rapid regression. Thus, the immunosuppressive milieu in tumors must be actively maintained, and tumors become susceptible to immune attack if the PTEN pathway in Tregs is disrupted.

  • Publication

    The PTEN pathway in Tregs functions as a critical driver of the immunosuppressive tumor microenvironment and tolerance to apoptotic cells

    (BioMed Central, 2015) Sharma, Madhav; Shinde, Rahul; McGaha, Tracy; Huang, Lei; Holmgaard, Rikke; Wolchok, Jedd; Mautino, Mario; Celis, Esteban; Sharpe, Arlene; Francisco, Loise; Powell, Jonathan; Yagita, Hideo; Mellor, Andrew; Blazar, Bruce; Munn, David