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Shek, V.

Publications and source records attributed to Shek, V..

2 recordsLinked to original sources

HpBoRB, a helminth-derived CCP domain protein which binds RELMβ

Helminth infections persist by influencing host immunity through the release of immunomodulatory proteins which prevent immune ejection. The intestinal nematode Heligmosomoides polygyrus bakeri (Hpb) secretes multiple families of immunomodulatory proteins, many of which are composed of consecutive Complement Control Protein (CCP) domains. We hypothesized that further CCP domain proteins are secreted by the parasite to interact with the host. We identified an unusually large number of CCP domain-containing proteins in the genome of Hpb, and cloned a range of these for screening in an Avidity-based Extracellular Interaction Screening (AVEXIS) assay, focussing on interactions with host immune proteins. This screen confirmed the binding of known immunomodulators (HpBARI, TGM1) for their targets (ST2, TGFBR2) and identified a new interaction between a 2 CCP domain Hpb protein and mouse resistin-like molecule beta (RELM{beta}), a host protein demonstrated to have anti-helminth properties. This protein was named Binder of RELM{beta} (HpBoRB). This interaction was confirmed in ELISA, competition assays, size exclusion chromatography and surface plasmon resonance experiments, identifying a subnanomolar affinity interaction between HpBoRB and RELM{beta}. These data may indicate that Hpb interferes with the potent anti-helminth host protein RELM{beta} and adds to our knowledge of the host-parasite interactions mediated by Hpb secreted proteins.

immunology↗

Vaccination against helminth IL-33-modulators permits immune-mediated parasite ejection

The murine intestinal nematode Heligmosomoides polygyrus bakeri powerfully modulates the host immune response. This is achieved in part through the HpARI family (HpARI1/2/3), which act on IL-33, and the HpBARI family (HpBARI and HpBARI_Hom2), which act on ST2. Here, we find that this immunomodulation is evident only in the first week of infection, with abrogation of ST2 detection and systemic suppression of IL-33-dependent responses. Vaccination with individual HpARI or HpBARI family members raised antibody responses which could block these proteins immunomodulatory activities. During infection, vaccination could release the host from immunosuppression: HpARI2 vaccination resulted in much increased ILC2 and Th2 immunity, with heightened serum IL-4 and IL-5 responses, but did not abrogate ST2 suppression. In contrast, a HpBARI+HpBARI_Hom2 vaccination cocktail resulted in abrogation of ST2 suppression, and again increased Th2 immunity and serum cytokine responses. Either of the HpARI2 or the HpBARI cocktail vaccinations provided significant protection against subsequent H. polygyrus bakeri infection. We therefore show a proof of principle that vaccination with immunomodulatory proteins can protect the host against infection, and can be used as a tool for blocking the effects of specific parasite-derived proteins.

immunology↗