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MacDuff, D. A.

Publications and source records attributed to MacDuff, D. A..

3 recordsLinked to original sources

HOIL1 mediates MDA5 activation through ubiquitination of LGP2

The RIG-I-like receptors (RLRs), RIG-I and MDA5, are innate sensors of RNA virus infections that are critical for mounting a robust antiviral immune response. We have shown previously that HOIL1, a component of the Linear Ubiquitin Chain Assembly Complex (LUBAC), is essential for interferon (IFN) induction in response to viruses sensed by MDA5, but not for viruses sensed by RIG-I. LUBAC contains two unusual E3 ubiquitin ligases, HOIL1 and HOIP. HOIP generates methionine-1-linked polyubiquitin chains, whereas HOIL1 has recently been shown to conjugate ubiquitin onto serine and threonine residues. Here, we examined the differential requirement for HOIL1 and HOIP E3 ligase activities in RLR-mediated IFN induction. We determined that HOIL1 E3 ligase activity was critical for MDA5-dependent IFN induction, while HOIP E3 ligase activity played only a modest role in promoting IFN induction. HOIL1 E3 ligase promoted MDA5 oligomerization, its translocation to mitochondrial-associated membranes, and the formation of MAVS aggregates. We identified that HOIL1 can interact with and facilitate the ubiquitination of LGP2, a positive regulator of MDA5 oligomerization. In summary, our work identifies LGP2 ubiquitination by HOIL1 in facilitating the activation of MDA5 and the induction of a robust IFN response.

immunology↗

HOIL1 regulates group 3 innate lymphoid cell numbers in the colon and protects against systemic dissemination, colonic ulceration, and lethality from Citrobacter rodentium infection

HOIL1-deficient patients experience chronic intestinal inflammation and diarrhea as well as increased susceptibility to certain bacterial infections. HOIL1 is a component of the linear ubiquitin chain assembly complex (LUBAC) that regulates immune signaling pathways including NF-{kappa}B-activating pathways. We have shown previously that HOIL1 is essential for survival following Citrobacter rodentium gastrointestinal infection of mice, but the mechanism of protection by HOIL1 was not examined. C. rodentium is a murine model for human attaching and effacing (A/E) pathogens, enteropathogenic and enterohemorrhagic Escherichia coli, that cause diarrhea and food-borne illnesses, and lead to severe disease in children and immunocompromised individuals. In this study, we found that C. rodentium infection caused severe colitis and dissemination of C. rodentium to systemic organs in Hoil1-/-mice. HOIL1 was important in radiation-resistant cells and in the innate immune response to limit early replication of C. rodentium in the intestine, and to modulate induction of inflammatory cytokines. Using cell type-specific knock-out mice, we found that HOIL1 was dispensable in intestinal epithelial cells (IEC), but was required in CD11c- and lysozyme 2-expressing myeloid cells to prevent weight loss and systemic dissemination of C. rodentium. While HOIL1-deficiency did not affect populations of neutrophils or macrophages, dendritic cells and group 3 innate lymphoid cell (ILC3) numbers were reduced, resulting in a defect in IL-22 induction during C. rodentium infection. Understanding the role HOIL1 plays in limiting the pathogenesis of A/E lesion-forming bacteria will provide further insights into the innate immune response to gastrointestinal pathogens and inflammatory disorders.

immunology↗

HOIL1 regulates group 2 innate lymphoid cell numbers and type 2 inflammation in the small intestine

Patients with mutations in HOIL1 experience a complex immune disorder including intestinal inflammation. To investigate the role of HOIL1 in regulating intestinal inflammation, we employed a mouse model of HOIL1 deficiency. The ileum of Hoil1-/- mice displayed features of type 2 inflammation including tuft cell and goblet cell hyperplasia, and elevated expression of Il13, Il5 and Il25 mRNA. Inflammation persisted in the absence of T and B cells, and bone marrow chimeric mice revealed a requirement for HOIL1 expression in radiation-resistant cells to regulate inflammation. Although disruption of IL-4 receptor alpha (IL4R) signaling on intestinal epithelial cells ameliorated tuft and goblet cell hyperplasia, expression of Il5 and Il13 mRNA remained elevated. KLRG1hi CD90lo group 2 innate lymphoid cell (ILC2) were increased independent of IL4R signaling, tuft cell hyperplasia and IL-25 induction. Antibiotic treatment dampened intestinal inflammation indicating commensal microbes as a contributing factor. We have identified a key role for HOIL1, a component of the Linear Ubiquitin Chain Assembly Complex, in regulating type 2 inflammation in the small intestine. Understanding the mechanism by which HOIL1 regulates type 2 inflammation will advance our understanding of intestinal homeostasis and inflammatory disorders and may lead to the identification of new targets for treatment.

immunology↗