The role of morphogens in B cell development

Morphogens are signalling molecules that play a significant role in modulation of cell fate and development. Hedgehog proteins (Hh) are morphogens that have been shown to be involved in the development of immune cells. In this study, it is demonstrated that treatment of B cells with rShh, can increa...

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Main Author: Umukoro, Cynthia Eloho
Published: University of East London 2016
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Online Access:https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.685722
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spelling ndltd-bl.uk-oai-ethos.bl.uk-6857222019-01-15T03:18:27ZThe role of morphogens in B cell developmentUmukoro, Cynthia Eloho2016Morphogens are signalling molecules that play a significant role in modulation of cell fate and development. Hedgehog proteins (Hh) are morphogens that have been shown to be involved in the development of immune cells. In this study, it is demonstrated that treatment of B cells with rShh, can increase B cell activation and also promote survival of B cells at 18hours post-stimulus. Also, at this time point, there was found to be an increase in secretion of antibody isotypes and IL-6. By 40hours post-stimulus, it was observed that the level of B cell activation was apparently arrested in treated B cells, whereas the level of activation continued to rise in untreated B cells. Interestingly, it was observed that there was an increase in the percentage of; CD23-CD25+ B cells when B cells were treated with rShh and this was accompanied by an increase in apoptosis. Consistent with this finding in relation to apoptosis, there was an increased expression of the pro-apoptotic protein Bnip3 in B cells treated with rShh by 40hours post-stimulus. It was observed that there were three subsets of B cells arising in our culture at 40hours, which were all found to possess different characteristics. It was demonstrated that treatment with rShh can increase B cell differentiation towards FO-I at 18hours post-stimulus. By 40hours post-stimulus, Hh signalling can divert differentiation away from the FO-I B cell towards the T2-MZP, which was accompanied by an increase in IL-10 secretion. Gene expression analysis revealed that Hh signalling could modulate a number of molecules involved in delivering the BCR signal into the cells such as Btk, Nfatc1 and Traf2. Additionally, deletion of Dhh, showed that there was a skewed peripheral B cell development in the Dhh-/- mice. Overall, our data demonstrate that Hh signalling can regulate the development of B cells in response to an activation stimulus by strengthening the BCR signalling pathway.571.8University of East London10.15123/PUB.5018https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.685722http://roar.uel.ac.uk/5018/Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 571.8
spellingShingle 571.8
Umukoro, Cynthia Eloho
The role of morphogens in B cell development
description Morphogens are signalling molecules that play a significant role in modulation of cell fate and development. Hedgehog proteins (Hh) are morphogens that have been shown to be involved in the development of immune cells. In this study, it is demonstrated that treatment of B cells with rShh, can increase B cell activation and also promote survival of B cells at 18hours post-stimulus. Also, at this time point, there was found to be an increase in secretion of antibody isotypes and IL-6. By 40hours post-stimulus, it was observed that the level of B cell activation was apparently arrested in treated B cells, whereas the level of activation continued to rise in untreated B cells. Interestingly, it was observed that there was an increase in the percentage of; CD23-CD25+ B cells when B cells were treated with rShh and this was accompanied by an increase in apoptosis. Consistent with this finding in relation to apoptosis, there was an increased expression of the pro-apoptotic protein Bnip3 in B cells treated with rShh by 40hours post-stimulus. It was observed that there were three subsets of B cells arising in our culture at 40hours, which were all found to possess different characteristics. It was demonstrated that treatment with rShh can increase B cell differentiation towards FO-I at 18hours post-stimulus. By 40hours post-stimulus, Hh signalling can divert differentiation away from the FO-I B cell towards the T2-MZP, which was accompanied by an increase in IL-10 secretion. Gene expression analysis revealed that Hh signalling could modulate a number of molecules involved in delivering the BCR signal into the cells such as Btk, Nfatc1 and Traf2. Additionally, deletion of Dhh, showed that there was a skewed peripheral B cell development in the Dhh-/- mice. Overall, our data demonstrate that Hh signalling can regulate the development of B cells in response to an activation stimulus by strengthening the BCR signalling pathway.
author Umukoro, Cynthia Eloho
author_facet Umukoro, Cynthia Eloho
author_sort Umukoro, Cynthia Eloho
title The role of morphogens in B cell development
title_short The role of morphogens in B cell development
title_full The role of morphogens in B cell development
title_fullStr The role of morphogens in B cell development
title_full_unstemmed The role of morphogens in B cell development
title_sort role of morphogens in b cell development
publisher University of East London
publishDate 2016
url https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.685722
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