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Tam, Jenny

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Tam

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Jenny

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Tam, Jenny

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Now showing 1 - 7 of 7
  • Publication

    Control and Manipulation of Pathogens with an Optical Trap for Live Cell Imaging of Intercellular Interactions

    (Public Library of Science, 2010) Tam, Jenny; Castro, Carlos E.; Heath, Robert John William; Cardenas, Michael L.; Xavier, Ramnik; Lang, Matthew J.; Vyas, Jatin

    The application of live cell imaging allows direct visualization of the dynamic interactions between cells of the immune system. Some preliminary observations challenge long-held beliefs about immune responses to microorganisms; however, the lack of spatial and temporal control between the phagocytic cell and microbe has rendered focused observations into the initial interactions of host response to pathogens difficult. This paper outlines a method that advances live cell imaging by integrating a spinning disk confocal microscope with an optical trap, also known as an optical tweezer, in order to provide exquisite spatial and temporal control of pathogenic organisms and place them in proximity to host cells, as determined by the operator. Polymeric beads and live, pathogenic organisms (Candida albicans and Aspergillus fumigatus) were optically trapped using non-destructive forces and moved adjacent to living cells, which subsequently phagocytosed the trapped particle. High resolution, transmitted light and fluorescence-based movies established the ability to observe early events of phagocytosis in living cells. To demonstrate the broad applicability of this method to immunological studies, anti-CD3 polymeric beads were also trapped and manipulated to form synapses with T cells in vivo, and time-lapse imaging of synapse formation was also obtained. By providing a method to exert fine control of live pathogens with respect to immune cells, cellular interactions can be captured by fluorescence microscopy with minimal perturbation to cells and can yield powerful insight into early responses of innate and adaptive immunity.

  • Publication

    The Role of Autophagy-Related Proteins in Candida albicans Infections

    (MDPI, 2016) Tam, Jenny; Mansour, Michael; Acharya, Mridu; Sokolovska, Anna; Timmons, Allison K.; Lacy-Hulbert, Adam; Vyas, Jatin

    Autophagy plays an important role in maintaining cell homeostasis by providing nutrients during periods of starvation and removing damaged organelles from the cytoplasm. A marker in the autophagic process is the reversible conjugation of LC3, a membrane scaffolding protein, to double membrane autophagosomes. Recently, a role for LC3 in the elimination of pathogenic bacteria and fungi, including Candida albicans (C. albicans), was demonstrated, but these organisms reside in single membrane phagosomes. This process is distinct from autophagy and is termed LC3-associated phagocytosis (LAP). This review will detail the hallmarks of LAP that distinguish it from classical autophagy and review the role of autophagy proteins in host response to C. albicans and other pathogenic fungi.

  • Publication

    Modulatory role of vitamin A on the Candida albicans-induced immune response in human monocytes

    (Springer Berlin Heidelberg, 2014) Klassert, Tilman E.; Hanisch, Anja; Bräuer, Julia; Klaile, Esther; Heyl, Kerstin A.; Mansour, Michael M.; Tam, Jenny; Vyas, Jatin; Slevogt, Hortense

    Beyond its well-documented role in reproduction, embryogenesis and maintenance of body tissues, vitamin A has attracted considerable attention due to its immunomodulatory effects on both the innate and the adaptive immune responses. In infectious diseases, vitamin A has been shown to have a host-protective effect in infections of bacterial, viral or protozoan origin. Nevertheless, its impact in fungal infections remains unknown. Meanwhile, the frequency of invasive mycoses keeps on growing, with Candida albicans being the major opportunistic fungal pathogen and associated with high mortality. In the present work, we explored the impact of all-trans retinoic acid (atRA), the most active metabolite of vitamin A, on the innate immune response against C.albicans in human monocytes. Our results show a strong immunomodulatory role for atRA, leading to a significant down-regulation of the fungi-induced expression and secretion of the pro-inflammatory cytokines TNFα, IL6 and IL12. Moreover, atRA significantly suppressed the expression of Dectin-1, a major fungal pattern recognition receptor, as well as the Dectin-1-dependent cytokine production. Both RAR-dependent and RAR-independent mechanisms seem to play a role in the atRA-mediated immunomodulation. Our findings open a new direction to elucidate the role of vitamin A on the immune function during fungal infections. Electronic supplementary material The online version of this article (doi:10.1007/s00430-014-0351-4) contains supplementary material, which is available to authorized users.

  • Publication

    Erratum to: Modulatory role of vitamin A on the Candida albicans-induced immune response in human monocytes

    (Springer Berlin Heidelberg, 2014) Klassert, Tilman E.; Hanisch, Anja; Bräuer, Julia; Klaile, Esther; Heyl, Kerstin A.; Mansour, Michael; Tam, Jenny; Vyas, Jatin; Slevogt, Hortense
  • Publication

    αv Integrins combine with LC3 and atg5 to regulate Toll-like receptor signalling in B cells

    (Nature Publishing Group, 2016) Acharya, Mridu; Sokolovska, Anna; Tam, Jenny; Conway, Kara L.; Stefani, Caroline; Raso, Fiona; Mukhopadhyay, Subhankar; Feliu, Marianela; Paul, Elahna; Savill, John; Hynes, Richard O.; Xavier, Ramnik; Vyas, Jatin; Stuart, Lynda M.; Lacy-Hulbert, Adam

    Integrin signalling triggers cytoskeletal rearrangements, including endocytosis and exocytosis of integrins and other membrane proteins. In addition to recycling integrins, this trafficking can also regulate intracellular signalling pathways. Here we describe a role for αv integrins in regulating Toll-like receptor (TLR) signalling by modulating intracellular trafficking. We show that deletion of αv or β3 causes increased B-cell responses to TLR stimulation in vitro, and αv-conditional knockout mice have elevated antibody responses to TLR-ligand-associated antigens. αv regulates TLR signalling by promoting recruitment of the autophagy component LC3 (microtubule-associated proteins 1 light chain 3) to TLR-containing endosomes, which is essential for progression from NF-κB to IRF signalling, and ultimately for traffic to lysosomes where signalling is terminated. Disruption of LC3 recruitment leads to prolonged NF-κB signalling and increased B-cell proliferation and antibody production. This work identifies a previously unrecognized role for αv and the autophagy components LC3 and atg5 in regulating TLR signalling and B-cell immunity.

  • Publication

    Dectin-1 Activation Controls Maturation of β-1,3-Glucan-containing Phagosomes

    (American Society for Biochemistry & Molecular Biology (ASBMB), 2013) Mansour, Michael; Tam, Jenny; Khan, Nida S.; Seward, Michael; Davids, Peter J.; Puranam, Sravanthi; Sokolovska, Anna; Sykes, David; Dagher, Zeina; Becker, Christine; Tanne, Antoine; Reedy, Jennifer; Stuart, Lynda M.; Vyas, Jatin

    Background: Dectin-1 is able to recognize and phagocytose the fungal carbohydrate, β-1,3-glucan, but its contribution to phagosomal maturation has not been explored.

    Results: Dectin-1-dependent Syk activation promotes phagolysosomal fusion and acidification.

    Conclusion: Dectin-1-dependent Syk-activation permits egress of early phagosomes to mature phagolysosomes.

    Significance: The surface recognition receptor, Dectin-1 shapes anti-fungal responses by controlling fungal phagosome maturation.

  • Publication

    Fluorescent Tracking of Yeast Division Clarifies the Essential Role of Spleen Tyrosine Kinase in the Intracellular Control of Candida glabrata in Macrophages

    (Frontiers Media S.A., 2018) Dagher, Zeina; Xu, Shuying; Negoro, Paige E.; Khan, Nida S.; Feldman, Michael; Reedy, Jennifer; Tam, Jenny; Sykes, David; Mansour, Michael

    Macrophages play a critical role in the elimination of fungal pathogens. They are sensed via cell surface pattern-recognition receptors and are phagocytosed into newly formed organelles called phagosomes. Phagosomes mature through the recruitment of proteins and lysosomes, resulting in addition of proteolytic enzymes and acidification of the microenvironment. Our earlier studies demonstrated an essential role of Dectin-1-dependent activation of spleen tyrosine kinase (Syk) in the maturation of fungal containing phagosomes. The absence of Syk activity interrupted phago-lysosomal fusion resulting in arrest at an early phagosome stage. In this study, we sought to define the contribution of Syk to the control of phagocytosed live Candida glabrata in primary macrophages. To accurately measure intracellular yeast division, we designed a carboxyfluorescein succinimidyl ester (CFSE) yeast division assay in which bright fluorescent parent cells give rise to dim daughter cells. The CFSE-labeling of C. glabrata did not affect the growth rate of the yeast. Following incubation with macrophages, internalized CFSE-labeled C. glabrata were retrieved by cellular lysis, tagged using ConA-647, and the amount of residual CFSE fluorescence was assessed by flow cytometry. C. glabrata remained undivided (CFSE bright) for up to 18 h in co-culture with primary macrophages. Treatment of macrophages with R406, a specific Syk inhibitor, resulted in loss of intracellular control of C. glabrata with initiation of division within 4 h. Delayed Syk inhibition after 8 h was less effective indicating that Syk is critically required at early stages of macrophage–fungal interaction. In conclusion, we demonstrate a new method of tracking division of C. glabrata using CFSE labeling. Our results suggest that early Syk activation is essential for macrophage control of phagocytosed C. glabrata.