{"id":{"repo_id":"wurz-thes","oai_identifier":"oai:opus.bibliothek.uni-wuerzburg.de:302"},"canonical_url":"https://search.dev.ndltd.org/etd/wurz-thes/oai:opus.bibliothek.uni-wuerzburg.de:302","repository":{"repo_id":"wurz-thes","name":"Universität Wüzburg","base_url":"https://opus.bibliothek.uni-wuerzburg.de/oai"},"display":{"title":"The Role of Vav-1, Vav-2 and Lsc in NK T cell development and NK cell cytotoxicity","abstract":"The hematopoietic-specific Rho-family GTP exchange factor (GEF) Vav-1 is a regulator of lymphocyte antigen receptor signaling and mediates normal maturation and activation of B and T cells. Recent findings suggest that Vav-1 also forms part of signaling pathways required for natural and antibody dependent cellular cytotoxicity (ADCC) of human NK cells. In this study, I show that Vav-1 is also expressed in murine NK cells. Vav-1-/- mice had normal numbers of splenic NK cells, and these displayed a similar expression profile of NK cell receptors as cells from wild type mice. Unexpectedly, IL-2-activated Vav-1-/- NK cells retained normal ADCC. Fc-receptor mediated activation of ERK, JNK, and p38 was also normal. In contrast, Vav-1-/- NK cells exhibited reduced natural cytotoxicity against EL4, C4.4.25, RMA and RMA/S. Together, these results demonstrate that Vav-1 is dispensable for mainstream NK cell development, but is required for NK cell natural cytotoxicity. Vav-2, a protein homologous to Vav-1 has also been implicated in NK cell functions. However, NK cells from Vav-2-/- mice have normal cytotoxic activities and NK cells that lack both Vav-1 and Vav-2 exhibit similar defect as Vav-1-/- cells. Thus Vav-2 has no apparent function in the development and the activation of NK cells. Although NK cell development is normal in Vav-1-/- mice, their numbers of NKT cells were dramatically diminished. Furthermore, NKT cells from Vav-1 mutant mice failed to produce IL-4 and IFNg following in vivo CD3 stimulation. A similar loss of NKT cells was observed in Vav-1-/-Vav-2-/- mice, but not in Vav-2-/- mice, suggesting that only Vav-1, and not Vav-2, is an essential regulator of NKT cell development and NK cell cytotoxicity. Similar to Vav-1, Lsc is a Rho GEF that is expressed specifically in the hematopoietic system. It contains a regulator of G-protein signaling (RGS) domain which negatively regulates the Ga12 and Ga13 subunits of G-protein coupled receptors (GPCRs). This study shows that NK and NKT cell development are normal in Lsc-/- mice. However, NK cells from mutant mice display enhanced cytotoxic responses towards a panel of tumor cells. These data implicate for the first time a RGS-containing Rho GEF in cytotoxic responses and suggest that Lsc down-modulate NK cell activation.","abstract_html":"The hematopoietic-specific Rho-family GTP exchange factor (GEF) Vav-1 is a regulator of lymphocyte antigen receptor signaling and mediates normal maturation and activation of B and T cells. Recent findings suggest that Vav-1 also forms part of signaling pathways required for natural and antibody dependent cellular cytotoxicity (ADCC) of human NK cells. In this study, I show that Vav-1 is also expressed in murine NK cells. Vav-1-/- mice had normal numbers of splenic NK cells, and these displayed a similar expression profile of NK cell receptors as cells from wild type mice. Unexpectedly, IL-2-activated Vav-1-/- NK cells retained normal ADCC. Fc-receptor mediated activation of ERK, JNK, and p38 was also normal. In contrast, Vav-1-/- NK cells exhibited reduced natural cytotoxicity against EL4, C4.4.25, RMA and RMA/S. Together, these results demonstrate that Vav-1 is dispensable for mainstream NK cell development, but is required for NK cell natural cytotoxicity. Vav-2, a protein homologous to Vav-1 has also been implicated in NK cell functions. However, NK cells from Vav-2-/- mice have normal cytotoxic activities and NK cells that lack both Vav-1 and Vav-2 exhibit similar defect as Vav-1-/- cells. Thus Vav-2 has no apparent function in the development and the activation of NK cells. Although NK cell development is normal in Vav-1-/- mice, their numbers of NKT cells were dramatically diminished. Furthermore, NKT cells from Vav-1 mutant mice failed to produce IL-4 and IFNg following in vivo CD3 stimulation. A similar loss of NKT cells was observed in Vav-1-/-Vav-2-/- mice, but not in Vav-2-/- mice, suggesting that only Vav-1, and not Vav-2, is an essential regulator of NKT cell development and NK cell cytotoxicity. Similar to Vav-1, Lsc is a Rho GEF that is expressed specifically in the hematopoietic system. It contains a regulator of G-protein signaling (RGS) domain which negatively regulates the Ga12 and Ga13 subunits of G-protein coupled receptors (GPCRs). This study shows that NK and NKT cell development are normal in Lsc-/- mice. However, NK cells from mutant mice display enhanced cytotoxic responses towards a panel of tumor cells. These data implicate for the first time a RGS-containing Rho GEF in cytotoxic responses and suggest that Lsc down-modulate NK cell activation.","abstract_has_math":false,"creators":["Chan, Gordon"],"institution":"Universität Würzburg","degree_name":null,"degree_level":"thesis.doctoral","degree_discipline":null,"degree_department":null,"school":null,"contributors":["Fischer, Klaus Dieter"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2002,"date_issued":"2002-10-09","date_published":"2002-10-09","updated_at":"2026-07-24T06:11:05Z","subjects":["Vav","Lsc/p115 Rho GEF","NK cells","cytotoxicity","T cells"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://opus.bibliothek.uni-wuerzburg.de/frontdoor/index/index/docId/302","outbound_label":"Repository record","outbound_source":"source_url"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Fischer, Klaus Dieter"]},{"key":"dc:creator","label":"Author","values":["Chan, Gordon"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:publisher","label":"Institution","values":["Universität Würzburg"]},{"key":"dc:type","label":"Dc Type","values":["doctoralThesis"]},{"key":"thesis:degree_level","label":"Degree Level","values":["thesis.doctoral"]},{"key":"thesis:institution_name","label":"Thesis Institution Name","values":["Universität Würzburg"]}]},{"id":"subjects_keywords","label":"Subjects and Keywords","entries":[{"key":"dc:subject","label":"Dc Subject","values":["Vav","Lsc/p115 Rho GEF","NK cells","cytotoxicity","T cells"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["The hematopoietic-specific Rho-family GTP exchange factor (GEF) Vav-1 is a regulator of lymphocyte antigen receptor signaling and mediates normal maturation and activation of B and T cells. Recent findings suggest that Vav-1 also forms part of signaling pathways required for natural and antibody dependent cellular cytotoxicity (ADCC) of human NK cells. In this study, I show that Vav-1 is also expressed in murine NK cells. Vav-1-/- mice had normal numbers of splenic NK cells, and these displayed a similar expression profile of NK cell receptors as cells from wild type mice. Unexpectedly, IL-2-activated Vav-1-/- NK cells retained normal ADCC. Fc-receptor mediated activation of ERK, JNK, and p38 was also normal. In contrast, Vav-1-/- NK cells exhibited reduced natural cytotoxicity against EL4, C4.4.25, RMA and RMA/S. Together, these results demonstrate that Vav-1 is dispensable for mainstream NK cell development, but is required for NK cell natural cytotoxicity. Vav-2, a protein homologous to Vav-1 has also been implicated in NK cell functions. However, NK cells from Vav-2-/- mice have normal cytotoxic activities and NK cells that lack both Vav-1 and Vav-2 exhibit similar defect as Vav-1-/- cells. Thus Vav-2 has no apparent function in the development and the activation of NK cells. Although NK cell development is normal in Vav-1-/- mice, their numbers of NKT cells were dramatically diminished. Furthermore, NKT cells from Vav-1 mutant mice failed to produce IL-4 and IFNg following in vivo CD3 stimulation. A similar loss of NKT cells was observed in Vav-1-/-Vav-2-/- mice, but not in Vav-2-/- mice, suggesting that only Vav-1, and not Vav-2, is an essential regulator of NKT cell development and NK cell cytotoxicity. Similar to Vav-1, Lsc is a Rho GEF that is expressed specifically in the hematopoietic system. It contains a regulator of G-protein signaling (RGS) domain which negatively regulates the Ga12 and Ga13 subunits of G-protein coupled receptors (GPCRs). This study shows that NK and NKT cell development are normal in Lsc-/- mice. However, NK cells from mutant mice display enhanced cytotoxic responses towards a panel of tumor cells. These data implicate for the first time a RGS-containing Rho GEF in cytotoxic responses and suggest that Lsc down-modulate NK cell activation.","Vav-1 ist ein spezifisch in hämatopoetischen Zellen exprimierter Guanin-Nukleotid-Exchange-Faktor (GEF) für Rho-GTPasen, der die Antigenrezeptor-vermittelte Signaltransduktion in Lymphocyten reguliert und essentiell für der Reifung und Aktivierung von B- und T-Zellen ist. Untersuchungen an menschlichen Zellen lassen vermuten, dass Vav1 auch für Antikörper-unabhängige, natürliche Zytotoxizität und die Antikörper-abhängige zellvermittelte Zytoxizität (ADCC) von „Natürlichen-Killerzellen“ (NK-Zellen) wichtig ist. In der vorliegenden Arbeit zeige ich, dass Vav-1 auch in murinen NK-Zellen exprimiert ist. Analysen von Vav-1-/--Mäuse zeigen eine normale Anzahl von NK-Zellen, die wiederum ein ähnliches Expressionsprofil von typischen NK-Zell-Rezeptoren im Vergleich zu wildtypischen Mäusen aufweisen. Die ADCC von Vav-1-/- NK-Zellen ist unverändert, wie auch die Fc-Rezeptor vermittelte Aktivierung von ERK, JNK und p38. Im Gegensatz dazu zeigen Vav-1-/- NK-Zellen eine reduzierte natürliche Cytotoxizität gegenüber EL4-, C4.4.25-, RMA- und RMA/S-Zielzellen. Vav-1 ist daher nicht für die Entwicklung, sondern für den Aufbau der natürlichen Cytotoxizität von NK-Zellen von Bedeutung. Für Vav-2 wurde ebenfalls eine Rolle in NK-Zellfunktionen wahrscheinlich gemacht. Dennoch zeigen Vav-2-/- Mäuse ein normales zytotoxisches Verhalten. NK-Zellen von Vav-1/Vav-2-doppeldefizienten Tieren weisen ähnliche Defekte wie NK-Zellen von Vav-1-defizienten Tieren. Somit besitzt Vav-2 keine entscheidende Funktion für die Entwicklung und Aktivierung von NK-Zellen. Im Gegensatz zu NK-Zellen ist die Anzahl der NKT-Zellen in Vav-1-/- Mäusen drastisch reduziert. Außerdem sind NKT-Zellen Vav-1-defizienter Mäuse nicht in der Lage IL-4 und INFg nach CD3-Stimulierung in vivo zu produzieren. Ein ähnlicher Verlust der NKT-Zell-Population wurde in Vav-1-/-- Vav-2-/--Mäusen beobachtet, nicht aber in Vav-2-/- Mäusen. Daher scheint nur Vav-1, nicht aber Vav-2, ein essentieller Regulator sowohl der NKT-Zell-Entwicklung als auch der NK-Zell-Cytotoxizität zu sein. Ein weiterer Rho-GEF, Lsc, ist ebenfalls spezifisch im hämatopoetischen System exprimiert. Lsc besitzt auch eine negativ-regulatorische RGS-Domäne (regulator of G-protein signaling) für die Ga12- und Ga13-Untereinheiten von G-Protein-gekoppelten Rezeptoren. NK- und NKT-Zellen von Lsc-defizienten Mäusen entwickeln sich normal, weisen aber eine erhöhte Cytotoxizität gegenüber einer Reihe von Tumor-Zellen auf. Diese Daten zeigen zum ersten mal die Beteiligung eines RGS-Rho-GEF an zytotoxischen Reaktionen und deuten auf eine negative Modulation der NK-Zell-Aktivierung durch Lsc hin."]},{"key":"dc:format.medium","label":"Dc Format Medium","values":["application/pdf"]},{"key":"dc:title","label":"Title","values":["The Role of Vav-1, Vav-2 and Lsc in NK T cell development and NK cell cytotoxicity"]}]}],"canonical_facts":{"dc:contributor":["Fischer, Klaus Dieter"],"dc:creator":["Chan, Gordon"],"dc:description.abstract":["The hematopoietic-specific Rho-family GTP exchange factor (GEF) Vav-1 is a regulator of lymphocyte antigen receptor signaling and mediates normal maturation and activation of B and T cells. Recent findings suggest that Vav-1 also forms part of signaling pathways required for natural and antibody dependent cellular cytotoxicity (ADCC) of human NK cells. In this study, I show that Vav-1 is also expressed in murine NK cells. Vav-1-/- mice had normal numbers of splenic NK cells, and these displayed a similar expression profile of NK cell receptors as cells from wild type mice. Unexpectedly, IL-2-activated Vav-1-/- NK cells retained normal ADCC. Fc-receptor mediated activation of ERK, JNK, and p38 was also normal. In contrast, Vav-1-/- NK cells exhibited reduced natural cytotoxicity against EL4, C4.4.25, RMA and RMA/S. Together, these results demonstrate that Vav-1 is dispensable for mainstream NK cell development, but is required for NK cell natural cytotoxicity. Vav-2, a protein homologous to Vav-1 has also been implicated in NK cell functions. However, NK cells from Vav-2-/- mice have normal cytotoxic activities and NK cells that lack both Vav-1 and Vav-2 exhibit similar defect as Vav-1-/- cells. Thus Vav-2 has no apparent function in the development and the activation of NK cells. Although NK cell development is normal in Vav-1-/- mice, their numbers of NKT cells were dramatically diminished. Furthermore, NKT cells from Vav-1 mutant mice failed to produce IL-4 and IFNg following in vivo CD3 stimulation. A similar loss of NKT cells was observed in Vav-1-/-Vav-2-/- mice, but not in Vav-2-/- mice, suggesting that only Vav-1, and not Vav-2, is an essential regulator of NKT cell development and NK cell cytotoxicity. Similar to Vav-1, Lsc is a Rho GEF that is expressed specifically in the hematopoietic system. It contains a regulator of G-protein signaling (RGS) domain which negatively regulates the Ga12 and Ga13 subunits of G-protein coupled receptors (GPCRs). This study shows that NK and NKT cell development are normal in Lsc-/- mice. However, NK cells from mutant mice display enhanced cytotoxic responses towards a panel of tumor cells. These data implicate for the first time a RGS-containing Rho GEF in cytotoxic responses and suggest that Lsc down-modulate NK cell activation.","Vav-1 ist ein spezifisch in hämatopoetischen Zellen exprimierter Guanin-Nukleotid-Exchange-Faktor (GEF) für Rho-GTPasen, der die Antigenrezeptor-vermittelte Signaltransduktion in Lymphocyten reguliert und essentiell für der Reifung und Aktivierung von B- und T-Zellen ist. Untersuchungen an menschlichen Zellen lassen vermuten, dass Vav1 auch für Antikörper-unabhängige, natürliche Zytotoxizität und die Antikörper-abhängige zellvermittelte Zytoxizität (ADCC) von „Natürlichen-Killerzellen“ (NK-Zellen) wichtig ist. In der vorliegenden Arbeit zeige ich, dass Vav-1 auch in murinen NK-Zellen exprimiert ist. Analysen von Vav-1-/--Mäuse zeigen eine normale Anzahl von NK-Zellen, die wiederum ein ähnliches Expressionsprofil von typischen NK-Zell-Rezeptoren im Vergleich zu wildtypischen Mäusen aufweisen. Die ADCC von Vav-1-/- NK-Zellen ist unverändert, wie auch die Fc-Rezeptor vermittelte Aktivierung von ERK, JNK und p38. Im Gegensatz dazu zeigen Vav-1-/- NK-Zellen eine reduzierte natürliche Cytotoxizität gegenüber EL4-, C4.4.25-, RMA- und RMA/S-Zielzellen. Vav-1 ist daher nicht für die Entwicklung, sondern für den Aufbau der natürlichen Cytotoxizität von NK-Zellen von Bedeutung. Für Vav-2 wurde ebenfalls eine Rolle in NK-Zellfunktionen wahrscheinlich gemacht. Dennoch zeigen Vav-2-/- Mäuse ein normales zytotoxisches Verhalten. NK-Zellen von Vav-1/Vav-2-doppeldefizienten Tieren weisen ähnliche Defekte wie NK-Zellen von Vav-1-defizienten Tieren. Somit besitzt Vav-2 keine entscheidende Funktion für die Entwicklung und Aktivierung von NK-Zellen. Im Gegensatz zu NK-Zellen ist die Anzahl der NKT-Zellen in Vav-1-/- Mäusen drastisch reduziert. Außerdem sind NKT-Zellen Vav-1-defizienter Mäuse nicht in der Lage IL-4 und INFg nach CD3-Stimulierung in vivo zu produzieren. Ein ähnlicher Verlust der NKT-Zell-Population wurde in Vav-1-/-- Vav-2-/--Mäusen beobachtet, nicht aber in Vav-2-/- Mäusen. Daher scheint nur Vav-1, nicht aber Vav-2, ein essentieller Regulator sowohl der NKT-Zell-Entwicklung als auch der NK-Zell-Cytotoxizität zu sein. Ein weiterer Rho-GEF, Lsc, ist ebenfalls spezifisch im hämatopoetischen System exprimiert. Lsc besitzt auch eine negativ-regulatorische RGS-Domäne (regulator of G-protein signaling) für die Ga12- und Ga13-Untereinheiten von G-Protein-gekoppelten Rezeptoren. NK- und NKT-Zellen von Lsc-defizienten Mäusen entwickeln sich normal, weisen aber eine erhöhte Cytotoxizität gegenüber einer Reihe von Tumor-Zellen auf. Diese Daten zeigen zum ersten mal die Beteiligung eines RGS-Rho-GEF an zytotoxischen Reaktionen und deuten auf eine negative Modulation der NK-Zell-Aktivierung durch Lsc hin."],"dc:format.medium":["application/pdf"],"dc:publisher":["Universität Würzburg"],"dc:subject":["Vav","Lsc/p115 Rho GEF","NK cells","cytotoxicity","T cells"],"dc:title":["The Role of Vav-1, Vav-2 and Lsc in NK T cell development and NK cell cytotoxicity"],"dc:type":["doctoralThesis"],"thesis:degree_level":["thesis.doctoral"],"thesis:institution_name":["Universität Würzburg"]},"updated_at":"2026-07-24T06:11:05Z"}