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Inman, G.

Publications and source records attributed to Inman, G..

2 recordsLinked to original sources

TGM6, a helminth secretory product, mimics TGF-β binding to TβRII to antagonize TGF-β signaling in fibroblasts

The murine helminth parasite Heligmosomoides polygyrus expresses a family of proteins structurally related to TGF-{beta} Mimic 1 (TGM1), a secreted five domain protein that activates the TGF-{beta} pathway and converts naive T lymphocytes to immunosuppressive Tregs. TGM1 signals through the TGF-{beta} type I and type II receptors, T{beta}RI and T{beta}RII, with domains 1-2 and 3 binding T{beta}RI and T{beta}RII, respectively, and domains 4-5 binding CD44, a co-receptor abundant on T cells. TGM6 is a homologue of TGM1 that is co-expressed with TGM1, but lacks domains 1 and 2. Herein, we show that TGM6 binds T{beta}RII through domain 3, but does not bind T{beta}RI, or other type I or type II receptors of the TGF-{beta} family. In TGF-{beta} reporter assays in fibroblasts, TGM6, but not truncated TGM6 lacking domains 4 and 5, potently inhibits TGF-{beta}- and TGM1-induced signaling, consistent with its ability to bind T{beta}RII but not T{beta}RI or other receptors of the TGF-{beta} family. However, TGM6 does not bind CD44 and is unable to inhibit TGF-{beta} and TGM1 signaling in T cells. To understand how TGM6 binds T{beta}RII, the X-ray crystal structure of the TGM6 domain 3 bound to T{beta}RII was determined at 1.4 [A]. This showed that TGM6 domain 3 binds T{beta}RII through an interface remarkably similar to the TGF-{beta}:T{beta}RII interface. These results suggest that TGM6 has adapted its domain structure and sequence to mimic TGF-{beta} binding to T{beta}RII and function as a potent TGF-{beta} and TGM1 antagonist in fibroblasts. The coexpression of TGM6, along with the immunosuppressive TGMs that activate the TGF-{beta} pathway, may prevent tissue damage caused by the parasite as it progresses through its life cycle from the intestinal lumen to submucosal tissues and back again.

biochemistry↗

The helminth TGF-beta mimic TGM4 is a modular ligand that binds CD44, CD49d and TGF-beta receptors to preferentially target myeloid cells

The murine helminth parasite Heligmosomoides polygyrus expresses a family of modular proteins which, replicating the functional activity of the immunomodulatory cytokine TGF-{beta}, have been named TGM (TGF-{beta} Mimic). Multiple domains bind to different receptors, including TGF-{beta} receptors T{beta}RI (ALK5) and T{beta}RII through domains 1-3, and prototypic family member TGM1 binds the cell surface co-receptor CD44 through domains 4-5. This allows TGM1 to induce T lymphocyte Foxp3 expression, characteristic of regulatory (Treg) cells, and to activate a range of TGF-{beta}-responsive cell types. In contrast, a related protein, TGM4, targets a much more restricted cell repertoire, primarily acting on myeloid cells, with less potent effects on T cells and lacking activity on other TGF-{beta}-responsive cell types. TGM4 binds avidly to myeloid cells by flow cytometry, and can outcompete TGM1 for cell binding. Analysis of receptor binding in comparison to TGM1 reveals a 10-fold higher affinity than TGM1 for TGF{beta}R-I (T{beta}RI), but a 100-fold lower affinity for T{beta}RII through Domain 3. Consequently, TGM4 is more dependent on co-receptor binding; in addition to CD44, TGM4 also engages CD49d (Itga4) through Domains 1-3, as well as CD206 and Neuropilin-1 through Domains 4 and 5. TGM4 was found to effectively modulate macrophage populations, inhibiting lipopolysaccharide-driven inflammatory cytokine production and boosting interleukin (IL)-4-stimulated responses such as Arginase-1 in vitro and in vivo. These results reveal that the modular nature of TGMs has allowed the fine tuning of the binding affinities of the T{beta}R- and co-receptor binding domains to establish cell specificity for TGF-{beta} signalling in a manner that cannot be attained by the mammalian cytokine.

immunology↗