FP7Индивидуална стипендия2014–2015

ASYMMETRY IN B CELLS · Asymmetrical B cell division: origin and functional significance

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2014-01-01 → 2015-12-31
Финансиране от ЕС
221 606 €
Участници
2
Схема
MC-IEF

Линиите свързват координатора с партньорите.

Накратко на български

B-лимфоцитите разпределят антигените неравномерно между двете дъщерни клетки при делене. Това помага да се разбере как се определят различните роли на клетките в имунната система и как се изгражда ефективен имунен отговор.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Asymmetrical B cell division: origin and functional significance.

After antigen encounter, the immune system initiates a complex response during which antibodies and memory cells are generated. B lymphocytes play a key function in this process. They become fully activated after recognising the antigen through the B cell receptor (BCR). Once the antigen is recognised, it is internalised and processed, and presented back on the surface of the B cell. The internalised antigen is polarised towards a specific location in the cell architecture (the microtubule organising centre), and, interestingly, it is kept there over time, resulting into an asymmetrical distribution between daughter cells once the cell enters into mitosis. The differing amount of antigen inherited by daughter cells seems to bias them towards playing different roles in the immune system. The overall aim of this proposal was to understand how antigen polarity is established and maintained, giving rise to asymmetrical B cell division, as well as exploring the functional meaning of this asymmetry. More specifically, the project objectives were: • How is antigen polarisation established and maintained following BCR-mediated internalisation? • What is the function of polarity establishment in B cells? • How does the asymmetric segregation of antigen influence the outcome of B cell differentiation in vivo? • Are there other factors asymmetrically segregated in B cells? During the course of this project we have developed state of the art techniques (confocal microscopy, flow cytometry and Image Stream) to quantify antigen polarity in B cells. This has allowed us to pinpoint microtubules and Protein kinase C (PKC) beta as key elements in the establishment and maintenance of polarity in B cells. Also, we have shown that such a polarity is essential to mount a productive immune response, being key for antigen presentation to cognate T cells and the initiation of the germinal centre reaction. Furthermore, we have seen that PKC beta has an intrinsic function in controlling the appearance of antibody producing cells (plasma cells), independently of antigen polarity. The results from this project will not only contribute to the general knowledge of immunological responses, but will also explain more precisely how an important molecule such as PKC beta plays its role in B cells; controlling the emergence of the various B cell populations that are originated after B cell activation. Also, when considering that PKC beta is implicated in several types of cancer (such as chronic lymphocytic leukaemia, chronic myeloid leukaemia, acute myeloid leukaemia, etc.) the outcome of this project has a potential impact on the fight against cancer.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

B cell activation required for antibody production and the establishment of immunological memory is initiated by antigen recognition through the B cell receptor (BCR) and subsequent internalization of antigen for presentation to T cells. After activation, B cells proliferate and differentiate into plasma cells or memory B cells. The mechanism involved in this B cell fate decision has been recently explored and a new theory has been proposed based on the existence of an asymmetrical B cell division (1). This theory assumes the unequal inheritance of antigen between daughter cells due to antigen being rapidly polarized in a unique compartment that is maintained along B cell division. This polarity abolishes the uniform distribution of antigen vesicles between daughter cells, generating two functionally different B cells.This proposal is focused on understanding how this initial antigen polarity is established and maintained and what is its role in B cell activation. Furthermore, the functional significance of the asymmetrical B cell decision will be analyzed in vitro and in vivo. In addition, possible new parameters asymmetrically distributed that could also determine B cell fate decisions will be evaluated.During this project, a huge range of techniques including state-of-the-art microscopy (in vitro and in vivo methodologies), flow cytometry systems (multiparametric analysis and ImageStream) will be used and advance mathematical analysis approaches will be developed.Results from this proposal will contribute to the general knowledge of immunological responses, but more precisely will explain how different B cell populations are originated after B cell activation, a key step that is deregulated in some diseases such as cancer.1.O. Thaunat et al., Science 335, 475 (Feb 26, 2012).

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз