Mingye Feng, Ph.D.
Affiliations: | 2011 | Johns Hopkins University School of Medicine, Baltimore, MD, United States | |
2017 | Stanford University School of Medicine, Palo Alto, CA, United States |
Area:
Cancer ImmunologyGoogle:
"Mingye Feng"Mean distance: 22
Cross-listing: Stem Cell Tree
Parents
Sign in to add mentorRajini Rao | grad student | 2011 | Johns Hopkins | |
(Function and regulation of calcium and manganese homeostasis and signaling by secretory pathway calcium-ATPases.) | ||||
Irving L. Weissman | post-doc | 2011-2017 | Stanford Medical School (FlyTree) |
Children
Sign in to add traineeGianna Nossa | research assistant | Purdue | |
Xu Cao | post-doc | National University of Singapore (Telomere and Telomerase Tree) | |
Siqi Chen | post-doc | Sun Yat-sen University (Stem Cell Tree) | |
Xiancai Zhong | post-doc | Seoul National University (Stem Cell Tree) | |
Sabina Muend | research scientist | Johns Hopkins Medical School |
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Publications
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Zhang X, Weiß T, Cheng MH, et al. (2023) Structural basis of G protein-Coupled receptor CMKLR1 activation and signaling induced by a chemerin-derived agonist. Plos Biology. 21: e3002188 |
Zhang X, Wang Y, Supekar S, et al. (2023) Pro-phagocytic function and structural basis of GPR84 signaling. Nature Communications. 14: 5706 |
Zhang X, Weiß T, Cheng MH, et al. (2023) Structural basis of CMKLR1 signaling induced by chemerin9. Biorxiv : the Preprint Server For Biology |
Zhang W, Cao X, Zhong X, et al. (2023) SRC2 controls CD4 T cell activation via stimulating c-Myc-mediated upregulation of amino acid transporter . Proceedings of the National Academy of Sciences of the United States of America. 120: e2221352120 |
Zhang X, Wang Y, Supekar S, et al. (2023) Pro-phagocytic function and structural basis of GPR84 signaling. Research Square |
Zhang W, Cao X, Zhong X, et al. (2022) Steroid nuclear receptor coactivator 2 controls immune tolerance by promoting induced T differentiation via up-regulating Nr4a2. Science Advances. 8: eabn7662 |
Cao X, Lai SWT, Chen S, et al. (2022) Targeting tumor-associated macrophages for cancer immunotherapy. International Review of Cell and Molecular Biology. 368: 61-108 |
Cao X, Chen J, Li B, et al. (2022) Promoting antibody-dependent cellular phagocytosis for effective macrophage-based cancer immunotherapy. Science Advances. 8: eabl9171 |
Cao X, Wang Y, Zhang W, et al. (2022) Targeting macrophages for enhancing CD47 blockade-elicited lymphoma clearance and overcoming tumor-induced suppression. Blood |
Tian L, Xu B, Teng KY, et al. (2021) Targeting Fc receptor-mediated effects and the "don't eat me" signal with an oncolytic virus expressing an anti-CD47 antibody to treat metastatic ovarian cancer. Clinical Cancer Research : An Official Journal of the American Association For Cancer Research |