{"id":{"repo_id":"uthsc","oai_identifier":"oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1310"},"canonical_url":"https://search.dev.ndltd.org/etd/uthsc/oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1310","repository":{"repo_id":"uthsc","name":"University of Texas Health Science Center at Houston","base_url":"https://digitalcommons.library.tmc.edu/do/oai/"},"display":{"title":"Deciphering The C-Type Lectin Receptor Signaling Pathway In Macrophages In Response to Candida Albicans","abstract":"<p><em>Candida albicans </em>causes opportunistic fungal infections in humans and is a significant cause of mortality and morbidity in immune-compromised individuals. Dectin-2, a C-type lectin receptor, is required for recognition of <em>C. albicans </em>by innate immune cells and is required for initiation of the anti-fungal immune response. We set out to identify components of the intracellular signaling cascade downstream of Dectin-2 activation in macrophages and to understand their importance in mediating the immune response to <em>C.</em> <em>albicans in vivo</em>. Using macrophages derived from Phospholipase-C-gamma 1 and 2 (PLCγ1and PLCγ2) knockout mice, we demonstrate that PLCγ2, but not PLCγ1, is required for activation of NF-κB and MAPK signaling pathways after <em>C. albicans </em>stimulation, resulting in impaired production of pro-inflammatory cytokines and reactive oxygen species. PLCγ2-deficient mice are highly susceptible to infections with <em>C. albicans, </em>indicating the importance of this pathway to the anti-fungal immune response<em>. </em>TAK1 and TRAF6 are critical nodes in NF-κB and MAPK activation downstream of immune surveillance and may be critical to the signaling cascade initiated by C-type lectin receptors in response to <em>C.</em> <em>albicans</em>. Macrophages derived from both TAK1 and TRAF6-deficient mice were unable to activate NF-κB and MAPK and consequently failed to produce inflammatory cytokines characteristic of the response to <em>C. albicans</em>. In this work we have identified PLCγ2, TAK1 and TRAF6 as components of a signaling cascade downstream of <em>C. albicans </em>recognition by C-type lectin receptors and as critical mediators of the anti-fungal immune response. A mechanistic understanding of the host immune response to <em>C. albicans </em>is important for the development of anti-fungal therapeutics and in understanding risk-factors determining susceptibility to <em>C. albicans </em>infection.</p> <p><em><br /></em></p>","abstract_html":"&lt;p&gt;&lt;em&gt;Candida albicans &lt;/em&gt;causes opportunistic fungal infections in humans and is a significant cause of mortality and morbidity in immune-compromised individuals. Dectin-2, a C-type lectin receptor, is required for recognition of &lt;em&gt;C. albicans &lt;/em&gt;by innate immune cells and is required for initiation of the anti-fungal immune response. We set out to identify components of the intracellular signaling cascade downstream of Dectin-2 activation in macrophages and to understand their importance in mediating the immune response to &lt;em&gt;C.&lt;/em&gt; &lt;em&gt;albicans in vivo&lt;/em&gt;. Using macrophages derived from Phospholipase-C-gamma 1 and 2 (PLCγ1and PLCγ2) knockout mice, we demonstrate that PLCγ2, but not PLCγ1, is required for activation of NF-κB and MAPK signaling pathways after &lt;em&gt;C. albicans &lt;/em&gt;stimulation, resulting in impaired production of pro-inflammatory cytokines and reactive oxygen species. PLCγ2-deficient mice are highly susceptible to infections with &lt;em&gt;C. albicans, &lt;/em&gt;indicating the importance of this pathway to the anti-fungal immune response&lt;em&gt;. &lt;/em&gt;TAK1 and TRAF6 are critical nodes in NF-κB and MAPK activation downstream of immune surveillance and may be critical to the signaling cascade initiated by C-type lectin receptors in response to &lt;em&gt;C.&lt;/em&gt; &lt;em&gt;albicans&lt;/em&gt;. Macrophages derived from both TAK1 and TRAF6-deficient mice were unable to activate NF-κB and MAPK and consequently failed to produce inflammatory cytokines characteristic of the response to &lt;em&gt;C. albicans&lt;/em&gt;. In this work we have identified PLCγ2, TAK1 and TRAF6 as components of a signaling cascade downstream of &lt;em&gt;C. albicans &lt;/em&gt;recognition by C-type lectin receptors and as critical mediators of the anti-fungal immune response. A mechanistic understanding of the host immune response to &lt;em&gt;C. albicans &lt;/em&gt;is important for the development of anti-fungal therapeutics and in understanding risk-factors determining susceptibility to &lt;em&gt;C. albicans &lt;/em&gt;infection.&lt;/p&gt; &lt;p&gt;&lt;em&gt;&lt;br /&gt;&lt;/em&gt;&lt;/p&gt;","abstract_has_math":false,"creators":["Gorjestani, Sara"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation (PhD)","degree_discipline":null,"degree_department":null,"school":null,"contributors":["Xin Lin, Ph.D.","Shao-Cong Sun, Ph.D.","Bryant G. Darnay, Ph.D."],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2012,"date_issued":"2012-08-01T07:00:00Z","date_published":"2012-08-01T07:00:00Z","updated_at":"2026-07-24T05:50:24Z","subjects":["Immunology and Infectious Disease","Medicine and Health Sciences"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.library.tmc.edu/utgsbs_dissertations/258","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Xin Lin, Ph.D.","Shao-Cong Sun, Ph.D.","Bryant G. 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Dectin-2, a C-type lectin receptor, is required for recognition of <em>C. albicans </em>by innate immune cells and is required for initiation of the anti-fungal immune response. We set out to identify components of the intracellular signaling cascade downstream of Dectin-2 activation in macrophages and to understand their importance in mediating the immune response to <em>C.</em> <em>albicans in vivo</em>. Using macrophages derived from Phospholipase-C-gamma 1 and 2 (PLCγ1and PLCγ2) knockout mice, we demonstrate that PLCγ2, but not PLCγ1, is required for activation of NF-κB and MAPK signaling pathways after <em>C. albicans </em>stimulation, resulting in impaired production of pro-inflammatory cytokines and reactive oxygen species. PLCγ2-deficient mice are highly susceptible to infections with <em>C. albicans, </em>indicating the importance of this pathway to the anti-fungal immune response<em>. </em>TAK1 and TRAF6 are critical nodes in NF-κB and MAPK activation downstream of immune surveillance and may be critical to the signaling cascade initiated by C-type lectin receptors in response to <em>C.</em> <em>albicans</em>. Macrophages derived from both TAK1 and TRAF6-deficient mice were unable to activate NF-κB and MAPK and consequently failed to produce inflammatory cytokines characteristic of the response to <em>C. albicans</em>. In this work we have identified PLCγ2, TAK1 and TRAF6 as components of a signaling cascade downstream of <em>C. albicans </em>recognition by C-type lectin receptors and as critical mediators of the anti-fungal immune response. A mechanistic understanding of the host immune response to <em>C. albicans </em>is important for the development of anti-fungal therapeutics and in understanding risk-factors determining susceptibility to <em>C. albicans </em>infection.</p> <p><em><br /></em></p>"]},{"key":"dc:title","label":"Title","values":["Deciphering The C-Type Lectin Receptor Signaling Pathway In Macrophages In Response to Candida Albicans"]}]}],"canonical_facts":{"dc:contributor":["Xin Lin, Ph.D.","Shao-Cong Sun, Ph.D.","Bryant G. Darnay, Ph.D."],"dc:creator":["Gorjestani, Sara"],"dc:date.available":["2012-07-26T07:00:00Z"],"dc:description.abstract":["<p><em>Candida albicans </em>causes opportunistic fungal infections in humans and is a significant cause of mortality and morbidity in immune-compromised individuals. Dectin-2, a C-type lectin receptor, is required for recognition of <em>C. albicans </em>by innate immune cells and is required for initiation of the anti-fungal immune response. We set out to identify components of the intracellular signaling cascade downstream of Dectin-2 activation in macrophages and to understand their importance in mediating the immune response to <em>C.</em> <em>albicans in vivo</em>. Using macrophages derived from Phospholipase-C-gamma 1 and 2 (PLCγ1and PLCγ2) knockout mice, we demonstrate that PLCγ2, but not PLCγ1, is required for activation of NF-κB and MAPK signaling pathways after <em>C. albicans </em>stimulation, resulting in impaired production of pro-inflammatory cytokines and reactive oxygen species. PLCγ2-deficient mice are highly susceptible to infections with <em>C. albicans, </em>indicating the importance of this pathway to the anti-fungal immune response<em>. </em>TAK1 and TRAF6 are critical nodes in NF-κB and MAPK activation downstream of immune surveillance and may be critical to the signaling cascade initiated by C-type lectin receptors in response to <em>C.</em> <em>albicans</em>. Macrophages derived from both TAK1 and TRAF6-deficient mice were unable to activate NF-κB and MAPK and consequently failed to produce inflammatory cytokines characteristic of the response to <em>C. albicans</em>. In this work we have identified PLCγ2, TAK1 and TRAF6 as components of a signaling cascade downstream of <em>C. albicans </em>recognition by C-type lectin receptors and as critical mediators of the anti-fungal immune response. A mechanistic understanding of the host immune response to <em>C. albicans </em>is important for the development of anti-fungal therapeutics and in understanding risk-factors determining susceptibility to <em>C. albicans </em>infection.</p> <p><em><br /></em></p>"],"dc:identifier":["https://digitalcommons.library.tmc.edu/utgsbs_dissertations/258"],"dc:subject":["Immunology and Infectious Disease","Medicine and Health Sciences"],"dc:title":["Deciphering The C-Type Lectin Receptor Signaling Pathway In Macrophages In Response to Candida Albicans"],"thesis:degree_level":["Dissertation (PhD)"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T05:50:24Z"}