CD28 · Probing CD28 as checkpoint for T cell co-stimulation in cancer and infection
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2021-10-29 → 2024-10-28
- EU contribution
- €245,732
- Participants
- 2
- Scheme
- MSCA-IF
Lines connect the coordinator with its partners.
Results in brief
Probing CD28 as checkpoint for T cell co-stimulation in cancer and infection
Cancer and autoimmune diseases are nowadays amongst the deadliest pathologies all over the world, becoming a serious concern for public health, as they keep producing millions of deaths annually. In this regard, T lymphocytes are key immune cells in the development of effective adaptive responses against these pathologies. Understanding how the activity and proliferation of these lymphocytes is regulated at cellular and molecular level is essential to develop effective therapies. Overall, the response delivered by T cells is determined by several membrane receptors that might trigger either stimulatory/co-stimulatory effects, leading to T cell proliferation, or instead, inhibitory effects that make T cells remain anergic and become tolerant to the inspected antigen. In particular, siglecs are membrane receptors that prime inhibitory effects on T cells upon engaging by sialic-acid containing antigens (self signature). This inhibitory behavior has been widely described to be exploited by hypersialylated tumoral cells to evade T cell responses. Over the last two decades, siglecs have progressively gained interest as therapeutic targets, given that their efficient blockage in tumors might help to restore T cell function. While some advancements have been achieved for few human siglecs like CD22 and CD33 so far, others remain pretty unknown, especially from a molecular point of view. Siglec-15 is a representative example of this unbalanced knowledge about the siglec family, as this lectin has been barely documented in peer-reviewed publications over the last 15 years. This receptor suppresses antigen-specific T cell responses in tumoral environments as a result of T cell interaction with tumor-associated macrophages (TAMs), which overexpress sialylated glycans in their surface. Therefore, in the present project, we aim to characterize in detail the molecular basis for recognition of sialic acid-containing glycans by siglec-15 and find improved hits to efficiently target it (aim 1). Also, a second aim is to develop molecular conjugates containing siglec antigens (using these hits) to neutralize the inhibitory effect of both siglec receptors and PD-1 receptors, helping T cells to exert an effective immune response in tumoral environments (aim 2).
Data: CORDIS, © European Union
Project objective
Regulation of T cells has been a cornerstone in the development of therapeutics for fighting a wide plethora of pathologies, including cancer, chronic infections and disease. The mechanisms governing activation or repression of T cells depend on several receptors which provide “second signals” following the initial interaction with APCs presenting MHC complexes. Among these receptors, CD28 constitutes the main interest for this project. Its role as co-stimulator of T cell activity is known for so long. However, the particular mechanisms underlying its effective interaction with its cognate ligands (CD80/CD86) remain unclear yet. In particular, the present project is aimed at exploring the possible role of sialic acid in regulation of CD28 co-stimulatory activity (via inhibition), which could provide a novel explanation for the so-called “neuraminidase effect” described for decades. This effect leads to enhanced antigen-mediated T cell activation when sialic acids are enzymatically removed, but its origin is uncertain. Additionally, the structural basis for CD28 regulation will be explored, putting an special emphasis on its exploitation for the design of molecular platforms which may serve for reactivation of exhausted T cells in tumor models. The proposed project will be jointly undertaken by two renowned groups with large and solid experience in the field of glycomics, at CIC bioGUNE (J. Jiménez-Barbero) and Scripps (J.C. Paulson). The applicant, under their guidance, will develop the project from a very wide and cross-disciplinar perspective, covering all unknown aspects related to CD28 so far as well as proposing a novel methodology to translate this knowledge into valuable goods for society. The success of the project will likewise have a remarkable impact in the field of immunotherapy-based treatments for patients with cancer or chronic infections.
Original text from CORDIS.
Participants
- ASOCIACION CENTRO DE INVESTIGACION COOPERATIVA EN BIOCIENCIAS · DERIO VIZCAYACoordinatorSpain
- THE SCRIPPS RESEARCH INSTITUTE CORPORATION · LA JOLLAUnited States
Links
Data: CORDIS, © European Union
