CD2 AND CD244 · Regulation of immune responses by CD2, CD244 and related receptors
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2009-05-01 → 2011-04-30
- Финансиране от ЕС
- 181 351 €
- Участници
- 1
- Схема
- MC-IIF
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Накратко на български
Протеините от фамилията CD2/SLAM на повърхността на NK клетките регулират сигналите за унищожаване на вирусно заразени или туморни клетки. Разбирането на този механизъм помага да се разбере как имунната система активира защитните си функции.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Regulation of immune responses by CD2, CD244 and related receptors
The generation of immune responses to infections require not only the recognition of the foreign invader, but also communication among different cell types of the immune system. In many cases, this communication is mediated by proteins on the cell surface. The objectives of our study were to understand how the family of cell surface proteins, known as the CD2/SLAM family receptors, contribute to the development of immune responses. When the extracellular portions of the receptors bind to their ligands on nearby cells, they cluster together and initiate a signal through the intracellular regions of the proteins. Natural killer (NK) cells are a type of cell that can recognise and kill virally infected cells as well as some tumour cells. They express many of the SLAM family receptors, and our aim was to determine how these proteins signal the NK cell to kill its target. The intracellular regions of all of the SLAM-family receptors contain short sequences that can bind to small adapter proteins called SAP and EAT2. A previous study in our laboratory had found that the enzyme Phospholipase C-gamma 1 (PLCγ1) could bind to a different region of EAT2. In this way, the cell surface proteins of the SLAM family can be coupled to enzymes inside the cell such as PLCγ1 that can activate NK cell cytotoxic functions. During the course of our study, we found that EAT2 might also recruit a second, related enzyme called PLCγ2. We used a human NK cell line called NK92 and a gene-delivery system known as lentiviral transduction to determine how these signalling proteins influence the activation of NK cell responses through CD2 and SLAM family receptors such as CD244. By transducing short hairpin RNA sequences (shRNA) into the NK92 cell line, we were able to disrupt the expression of specific genes within NK cells, including small adapter proteins SAP and EAT2, and intracellular enzymes Phospholipase C-gamma 1 and Phospholipase C-gamma 2 (PLCγ1 and PLCγ2). We then measured the ability of different cell surface proteins to induce NK cell killing. We found that the SLAM family receptors could readily trigger cytotoxicity, but are completely dependent on both PLCγ1 and PLCγ2 for initiating cytotoxic responses. Reduction in expression of the adapter protein EAT2 had only mild effects on cytotoxicity, while reducing SAP expression in NK cells dramatically limited the NK cytotoxic responses through SLAM-family proteins CD244, NTBA and CRACC. Therefore, we think it is likely that SLAM family receptors use both of these adapter proteins to cause PLCγ1 and PLCγ2 activation. A second critical function of NK cells is the production of small messenger proteins called cytokines. One such cytokine is interferon gamma (IFNγ) which can enhance the anti-tumour responses of NK cells through the activation of inflammatory macrophages. This cytokine can be produced by NK cells upon activating receptor stimulation, or after NK cells detect the presence of other cytokines such as IL-2 or IL-12. The disruption of PLCγ2 expression in NK cells resulted in decreased production of IFNγ after receptor stimulation, showing the overall importance of PLCγ2 in activating human NK cell function. Conversely, the loss of PLCγ1, SAP or EAT2 resulted in greater production of IFNγ in response to IL-2 stimulation. This finding indicates that proteins which are responsible for activating cytotoxic responses may also suppress intercellular communication through other pathways. These findings are important for other medical researchers trying to harness the immune system to eradicate tumours, especially leukemias and lymphomas.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
In order to understand how the mammalian immune system provides protection against pathogens, it is important to understand the molecular basis of immune system function. CD244 is one of the receptors related to CD150 (SLAM) with the potential to bind the adaptors, SAP and EAT-2. It has recently been shown by the host laboratory that the outcome of engagement of these receptors depends on the context of the interactions, such as which other receptors are engaged, the level of activation, and between which cells. The overall goal of this project will be to establish a paradigm for the function of the family of CD150-related receptors. With an initial analysis of CD2 and CD244, and later inclusion of additional family members, a thorough understanding of how this family of receptors modulates leukocyte function will be developed. Our specific aims are as follows. First, we plan to explore the parameters which determine the overall effect of CD244 and CD2 engagement during an immune response. Using a human NK cell line expressing CD2 and CD244, and a mouse T-cell hybridoma, we will examine the effects of the engagement of these receptors and recruitment of SAP and EAT-2 on cytotoxicity and IFN-gamma production. Second we will perform in vivo experiments relating human data on CD244 function to a mouse tumour model, in which the in vivo activity of a CD244 blocking antibody will be used to analyze the effect of CD244 blockade in resistance to tumour growth. Finally, using surface plasmon resonance and recombinant proteins, we will establish a hierarchy of likely interactions of intracellular signalling molecules with additional members of the CD150 receptor family. Using the model system established in the first two aims, the predictions derived from the BIAcore experiments can be tested for functional accuracy, and a greater paradigm for the function of this receptor family can be established.
Оригинален текст от CORDIS (на английски).
Участници
- THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF OXFORD · OxfordКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
