{"id":{"repo_id":"tenn-hsc","oai_identifier":"oai:dc.uthsc.edu:dissertations-1469"},"canonical_url":"https://search.dev.ndltd.org/etd/tenn-hsc/oai:dc.uthsc.edu:dissertations-1469","repository":{"repo_id":"tenn-hsc","name":"University of Tennessee Health Science Center","base_url":"https://dc.uthsc.edu/do/oai/"},"display":{"title":"Roles of Cytosolic Nucleic Acid Sensors in Cancer and Infection","abstract":"<p>Pattern recognition receptors are innate immune sensors that recognize pathogen-associated molecular patterns (PAMPs) and danger-associated molecular patterns (DAMPs) with crucial roles in host defense against microbial infection, autoimmune diseases and cancer. Cytosolic nucleic acids including DNA and RNA originate from pathogens or self-cells, which form major groups of PAMPs and DAMPs. A range of nucleic acid sensors have evolved to sense various types of nucleic acids. How different DNA-sensing pathways regulate microbial infection and cancer is the focus of this dissertation.</p> <p>Stimulator of IFN genes (STING) is a cytosolic innate immune sensor for cyclic dinucleotides that also serves a dual role as an adaptor molecule for a number of intracellular DNA receptors. A physiological role for STING in cancer was previously unknown. We showed that STING-deficient mice were highly susceptible to colitis-associated colorectal cancer. Colons of STING-deficient mice exhibited significant intestinal damage and overt proliferation with increased levels of pro-inflammatory cytokines during early stages of tumorigenesis, uncovering an unexpected and important role for STING in mediating protection against colorectal tumorigenesis.</p> <p>Absent in melanoma 2 (AIM2) forms an inflammasome with ASC and caspase-1 upon recognition of double-stranded DNA (dsDNA) in the cytosol leading to caspase-1 activation and caspase-1-dependent pyroptosis and release of cytokines IL-1 and IL-18. Mutations in AIM2 are frequently identified in patients with colorectal cancer, but how AIM2 modulates colonic tumorigenesis is unknown. We found that AIM2-deficient mice were hypersusceptible to colonic tumor development. While production of inflammasome-associated cytokines and other inflammatory mediators was largely intact in AIM2-deficient mice, intestinal stem cells lacking AIM2 were prone to uncontrolled proliferation. Aberrant Wnt signaling expanded a population of tumor-initiating stem cells in the absence of AIM2 driving the tumor development in AIM2-deficient mice. In addition to its role in cancer, AIM2 recognizes bacteria including <em>Francisella tularensis </em>subspecies <em>novicida </em>(<em>F. novicida</em>) and induces inflammasome responses. Type I interferon (IFN) signaling drives activation of AIM2 inflammasome in <em>F. novicida</em>-infected macrophages; however, the relative contribution of IFNs and inflammasome responses in host defense against <em>F. novicida </em>infection is less understood. We found intact AIM2 inflammasome responses in mice lacking type I IFN signaling during infection with <em>F. novicida</em>. Lack of type I IFN signaling conferred protection to <em>F. novicida </em>infection in contrast to the increased susceptibility in AIM2-deficient mice. Interestingly, mice lacking both AIM2 and IFNAR2 were protected against the infection indicating a dominant role for type I IFNs in mediating detrimental responses despite the protective AIM2 inflammasome responses. Gasdermin D (GSDMD) is activated by caspase-1 to generate pores on the plasma membrane to induce pyroptosis downstream of the AIM2 inflammasome. We also demonstrated that mice lacking GSDMD were highly susceptible to <em>F. novicida </em>infection. Interestingly, GSDMD is required for optimal caspase-1 activation during <em>F. novicida </em>infection, providing protection to the host during the infection.</p> <p>In addition, we identified differential mechanisms regulating expression of inflammasome-associated cytokines IL-1β and IL-18. IL-1β is only induced in response to inflammatory stimuli and its expression is not sustained during chronic treatment, while IL-18 is constitutively expressed and further induced after the stimulation in a type I IFN signaling-dependent manner.</p> <p>Overall, this dissertation addresses protective roles for cytosolic nucleic acid-sensing molecules, STING and AIM2, in colon cancer, uncovers an interplay between the AIM2 inflammasome and type IFN signaling during <em>F. novicida </em>infection, and demonstrates a novel function for GSDMD in regulating AIM2 inflammasome. The dissertation finally describes distinctive mechanisms governing inflammasome-associated cytokines IL-1β and IL-18.</p> <h5> </h5>","abstract_html":"&lt;p&gt;Pattern recognition receptors are innate immune sensors that recognize pathogen-associated molecular patterns (PAMPs) and danger-associated molecular patterns (DAMPs) with crucial roles in host defense against microbial infection, autoimmune diseases and cancer. Cytosolic nucleic acids including DNA and RNA originate from pathogens or self-cells, which form major groups of PAMPs and DAMPs. A range of nucleic acid sensors have evolved to sense various types of nucleic acids. How different DNA-sensing pathways regulate microbial infection and cancer is the focus of this dissertation.&lt;/p&gt; &lt;p&gt;Stimulator of IFN genes (STING) is a cytosolic innate immune sensor for cyclic dinucleotides that also serves a dual role as an adaptor molecule for a number of intracellular DNA receptors. A physiological role for STING in cancer was previously unknown. We showed that STING-deficient mice were highly susceptible to colitis-associated colorectal cancer. Colons of STING-deficient mice exhibited significant intestinal damage and overt proliferation with increased levels of pro-inflammatory cytokines during early stages of tumorigenesis, uncovering an unexpected and important role for STING in mediating protection against colorectal tumorigenesis.&lt;/p&gt; &lt;p&gt;Absent in melanoma 2 (AIM2) forms an inflammasome with ASC and caspase-1 upon recognition of double-stranded DNA (dsDNA) in the cytosol leading to caspase-1 activation and caspase-1-dependent pyroptosis and release of cytokines IL-1 and IL-18. Mutations in AIM2 are frequently identified in patients with colorectal cancer, but how AIM2 modulates colonic tumorigenesis is unknown. We found that AIM2-deficient mice were hypersusceptible to colonic tumor development. While production of inflammasome-associated cytokines and other inflammatory mediators was largely intact in AIM2-deficient mice, intestinal stem cells lacking AIM2 were prone to uncontrolled proliferation. Aberrant Wnt signaling expanded a population of tumor-initiating stem cells in the absence of AIM2 driving the tumor development in AIM2-deficient mice. In addition to its role in cancer, AIM2 recognizes bacteria including &lt;em&gt;Francisella tularensis &lt;/em&gt;subspecies &lt;em&gt;novicida &lt;/em&gt;(&lt;em&gt;F. novicida&lt;/em&gt;) and induces inflammasome responses. Type I interferon (IFN) signaling drives activation of AIM2 inflammasome in &lt;em&gt;F. novicida&lt;/em&gt;-infected macrophages; however, the relative contribution of IFNs and inflammasome responses in host defense against &lt;em&gt;F. novicida &lt;/em&gt;infection is less understood. We found intact AIM2 inflammasome responses in mice lacking type I IFN signaling during infection with &lt;em&gt;F. novicida&lt;/em&gt;. Lack of type I IFN signaling conferred protection to &lt;em&gt;F. novicida &lt;/em&gt;infection in contrast to the increased susceptibility in AIM2-deficient mice. Interestingly, mice lacking both AIM2 and IFNAR2 were protected against the infection indicating a dominant role for type I IFNs in mediating detrimental responses despite the protective AIM2 inflammasome responses. Gasdermin D (GSDMD) is activated by caspase-1 to generate pores on the plasma membrane to induce pyroptosis downstream of the AIM2 inflammasome. We also demonstrated that mice lacking GSDMD were highly susceptible to &lt;em&gt;F. novicida &lt;/em&gt;infection. Interestingly, GSDMD is required for optimal caspase-1 activation during &lt;em&gt;F. novicida &lt;/em&gt;infection, providing protection to the host during the infection.&lt;/p&gt; &lt;p&gt;In addition, we identified differential mechanisms regulating expression of inflammasome-associated cytokines IL-1β and IL-18. IL-1β is only induced in response to inflammatory stimuli and its expression is not sustained during chronic treatment, while IL-18 is constitutively expressed and further induced after the stimulation in a type I IFN signaling-dependent manner.&lt;/p&gt; &lt;p&gt;Overall, this dissertation addresses protective roles for cytosolic nucleic acid-sensing molecules, STING and AIM2, in colon cancer, uncovers an interplay between the AIM2 inflammasome and type IFN signaling during &lt;em&gt;F. novicida &lt;/em&gt;infection, and demonstrates a novel function for GSDMD in regulating AIM2 inflammasome. The dissertation finally describes distinctive mechanisms governing inflammasome-associated cytokines IL-1β and IL-18.&lt;/p&gt; &lt;h5&gt; &lt;/h5&gt;","abstract_has_math":false,"creators":["Zhu, Qifan"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation","degree_discipline":"Biomedical Sciences","degree_department":null,"school":null,"contributors":["Thirumala-Devi Kanneganti, Ph.D."],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2018,"date_issued":"2018-12-01T08:00:00Z","date_published":"2018-12-01T08:00:00Z","updated_at":"2026-07-24T05:00:33Z","subjects":["Cancer","Immunology","Infection","Inflammasome","Innate immunity","Pattern recognition receptors","Biological Phenomena, Cell Phenomena, and Immunity","Medical Cell Biology","Medical Immunology","Medical Sciences","Medicine and Health Sciences"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://dc.uthsc.edu/dissertations/477","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Thirumala-Devi Kanneganti, Ph.D."]},{"key":"dc:creator","label":"Author","values":["Zhu, Qifan"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date.available","label":"Dc Date Available","values":["2019-09-13T07:00:00Z"]},{"key":"thesis:degree_discipline","label":"Discipline","values":["Biomedical Sciences"]},{"key":"thesis:degree_level","label":"Degree Level","values":["Dissertation"]},{"key":"thesis:degree_name","label":"Degree Name","values":["Doctor of Philosophy (PhD)"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Cancer","Immunology","Infection","Inflammasome","Innate immunity","Pattern recognition receptors","Biological Phenomena, Cell Phenomena, and Immunity","Medical Cell Biology","Medical Immunology","Medical Sciences","Medicine and Health Sciences"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier","label":"Identifier","values":["https://dc.uthsc.edu/dissertations/477"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["<p>Pattern recognition receptors are innate immune sensors that recognize pathogen-associated molecular patterns (PAMPs) and danger-associated molecular patterns (DAMPs) with crucial roles in host defense against microbial infection, autoimmune diseases and cancer. Cytosolic nucleic acids including DNA and RNA originate from pathogens or self-cells, which form major groups of PAMPs and DAMPs. A range of nucleic acid sensors have evolved to sense various types of nucleic acids. How different DNA-sensing pathways regulate microbial infection and cancer is the focus of this dissertation.</p> <p>Stimulator of IFN genes (STING) is a cytosolic innate immune sensor for cyclic dinucleotides that also serves a dual role as an adaptor molecule for a number of intracellular DNA receptors. A physiological role for STING in cancer was previously unknown. We showed that STING-deficient mice were highly susceptible to colitis-associated colorectal cancer. Colons of STING-deficient mice exhibited significant intestinal damage and overt proliferation with increased levels of pro-inflammatory cytokines during early stages of tumorigenesis, uncovering an unexpected and important role for STING in mediating protection against colorectal tumorigenesis.</p> <p>Absent in melanoma 2 (AIM2) forms an inflammasome with ASC and caspase-1 upon recognition of double-stranded DNA (dsDNA) in the cytosol leading to caspase-1 activation and caspase-1-dependent pyroptosis and release of cytokines IL-1 and IL-18. Mutations in AIM2 are frequently identified in patients with colorectal cancer, but how AIM2 modulates colonic tumorigenesis is unknown. We found that AIM2-deficient mice were hypersusceptible to colonic tumor development. While production of inflammasome-associated cytokines and other inflammatory mediators was largely intact in AIM2-deficient mice, intestinal stem cells lacking AIM2 were prone to uncontrolled proliferation. Aberrant Wnt signaling expanded a population of tumor-initiating stem cells in the absence of AIM2 driving the tumor development in AIM2-deficient mice. In addition to its role in cancer, AIM2 recognizes bacteria including <em>Francisella tularensis </em>subspecies <em>novicida </em>(<em>F. novicida</em>) and induces inflammasome responses. Type I interferon (IFN) signaling drives activation of AIM2 inflammasome in <em>F. novicida</em>-infected macrophages; however, the relative contribution of IFNs and inflammasome responses in host defense against <em>F. novicida </em>infection is less understood. We found intact AIM2 inflammasome responses in mice lacking type I IFN signaling during infection with <em>F. novicida</em>. Lack of type I IFN signaling conferred protection to <em>F. novicida </em>infection in contrast to the increased susceptibility in AIM2-deficient mice. Interestingly, mice lacking both AIM2 and IFNAR2 were protected against the infection indicating a dominant role for type I IFNs in mediating detrimental responses despite the protective AIM2 inflammasome responses. Gasdermin D (GSDMD) is activated by caspase-1 to generate pores on the plasma membrane to induce pyroptosis downstream of the AIM2 inflammasome. We also demonstrated that mice lacking GSDMD were highly susceptible to <em>F. novicida </em>infection. Interestingly, GSDMD is required for optimal caspase-1 activation during <em>F. novicida </em>infection, providing protection to the host during the infection.</p> <p>In addition, we identified differential mechanisms regulating expression of inflammasome-associated cytokines IL-1β and IL-18. IL-1β is only induced in response to inflammatory stimuli and its expression is not sustained during chronic treatment, while IL-18 is constitutively expressed and further induced after the stimulation in a type I IFN signaling-dependent manner.</p> <p>Overall, this dissertation addresses protective roles for cytosolic nucleic acid-sensing molecules, STING and AIM2, in colon cancer, uncovers an interplay between the AIM2 inflammasome and type IFN signaling during <em>F. novicida </em>infection, and demonstrates a novel function for GSDMD in regulating AIM2 inflammasome. The dissertation finally describes distinctive mechanisms governing inflammasome-associated cytokines IL-1β and IL-18.</p> <h5> </h5>"]},{"key":"dc:title","label":"Title","values":["Roles of Cytosolic Nucleic Acid Sensors in Cancer and Infection"]}]}],"canonical_facts":{"dc:contributor":["Thirumala-Devi Kanneganti, Ph.D."],"dc:creator":["Zhu, Qifan"],"dc:date.available":["2019-09-13T07:00:00Z"],"dc:description.abstract":["<p>Pattern recognition receptors are innate immune sensors that recognize pathogen-associated molecular patterns (PAMPs) and danger-associated molecular patterns (DAMPs) with crucial roles in host defense against microbial infection, autoimmune diseases and cancer. Cytosolic nucleic acids including DNA and RNA originate from pathogens or self-cells, which form major groups of PAMPs and DAMPs. A range of nucleic acid sensors have evolved to sense various types of nucleic acids. How different DNA-sensing pathways regulate microbial infection and cancer is the focus of this dissertation.</p> <p>Stimulator of IFN genes (STING) is a cytosolic innate immune sensor for cyclic dinucleotides that also serves a dual role as an adaptor molecule for a number of intracellular DNA receptors. A physiological role for STING in cancer was previously unknown. We showed that STING-deficient mice were highly susceptible to colitis-associated colorectal cancer. Colons of STING-deficient mice exhibited significant intestinal damage and overt proliferation with increased levels of pro-inflammatory cytokines during early stages of tumorigenesis, uncovering an unexpected and important role for STING in mediating protection against colorectal tumorigenesis.</p> <p>Absent in melanoma 2 (AIM2) forms an inflammasome with ASC and caspase-1 upon recognition of double-stranded DNA (dsDNA) in the cytosol leading to caspase-1 activation and caspase-1-dependent pyroptosis and release of cytokines IL-1 and IL-18. Mutations in AIM2 are frequently identified in patients with colorectal cancer, but how AIM2 modulates colonic tumorigenesis is unknown. We found that AIM2-deficient mice were hypersusceptible to colonic tumor development. While production of inflammasome-associated cytokines and other inflammatory mediators was largely intact in AIM2-deficient mice, intestinal stem cells lacking AIM2 were prone to uncontrolled proliferation. Aberrant Wnt signaling expanded a population of tumor-initiating stem cells in the absence of AIM2 driving the tumor development in AIM2-deficient mice. In addition to its role in cancer, AIM2 recognizes bacteria including <em>Francisella tularensis </em>subspecies <em>novicida </em>(<em>F. novicida</em>) and induces inflammasome responses. Type I interferon (IFN) signaling drives activation of AIM2 inflammasome in <em>F. novicida</em>-infected macrophages; however, the relative contribution of IFNs and inflammasome responses in host defense against <em>F. novicida </em>infection is less understood. We found intact AIM2 inflammasome responses in mice lacking type I IFN signaling during infection with <em>F. novicida</em>. Lack of type I IFN signaling conferred protection to <em>F. novicida </em>infection in contrast to the increased susceptibility in AIM2-deficient mice. Interestingly, mice lacking both AIM2 and IFNAR2 were protected against the infection indicating a dominant role for type I IFNs in mediating detrimental responses despite the protective AIM2 inflammasome responses. Gasdermin D (GSDMD) is activated by caspase-1 to generate pores on the plasma membrane to induce pyroptosis downstream of the AIM2 inflammasome. We also demonstrated that mice lacking GSDMD were highly susceptible to <em>F. novicida </em>infection. Interestingly, GSDMD is required for optimal caspase-1 activation during <em>F. novicida </em>infection, providing protection to the host during the infection.</p> <p>In addition, we identified differential mechanisms regulating expression of inflammasome-associated cytokines IL-1β and IL-18. IL-1β is only induced in response to inflammatory stimuli and its expression is not sustained during chronic treatment, while IL-18 is constitutively expressed and further induced after the stimulation in a type I IFN signaling-dependent manner.</p> <p>Overall, this dissertation addresses protective roles for cytosolic nucleic acid-sensing molecules, STING and AIM2, in colon cancer, uncovers an interplay between the AIM2 inflammasome and type IFN signaling during <em>F. novicida </em>infection, and demonstrates a novel function for GSDMD in regulating AIM2 inflammasome. The dissertation finally describes distinctive mechanisms governing inflammasome-associated cytokines IL-1β and IL-18.</p> <h5> </h5>"],"dc:identifier":["https://dc.uthsc.edu/dissertations/477"],"dc:subject":["Cancer","Immunology","Infection","Inflammasome","Innate immunity","Pattern recognition receptors","Biological Phenomena, Cell Phenomena, and Immunity","Medical Cell Biology","Medical Immunology","Medical Sciences","Medicine and Health Sciences"],"dc:title":["Roles of Cytosolic Nucleic Acid Sensors in Cancer and Infection"],"thesis:degree_discipline":["Biomedical Sciences"],"thesis:degree_level":["Dissertation"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T05:00:33Z"}