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Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms

Mechanistic differences in the development and function of adaptive, high-affinity antibody-producing B-2 cells and innate-like, “natural” antibody-producing B-1a cells remain poorly understood. Here we show that the multi-functional dynein light chain (DYNLL1/LC8) plays important roles in the estab...

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Autores principales: King, Ashleigh, Li, Lingli, Wong, David M., Liu, Rui, Bamford, Rebecca, Strasser, Andreas, Tarlinton, David M., Heierhorst, Jörg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5619840/
https://www.ncbi.nlm.nih.gov/pubmed/28922373
http://dx.doi.org/10.1371/journal.pgen.1007010
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author King, Ashleigh
Li, Lingli
Wong, David M.
Liu, Rui
Bamford, Rebecca
Strasser, Andreas
Tarlinton, David M.
Heierhorst, Jörg
author_facet King, Ashleigh
Li, Lingli
Wong, David M.
Liu, Rui
Bamford, Rebecca
Strasser, Andreas
Tarlinton, David M.
Heierhorst, Jörg
author_sort King, Ashleigh
collection PubMed
description Mechanistic differences in the development and function of adaptive, high-affinity antibody-producing B-2 cells and innate-like, “natural” antibody-producing B-1a cells remain poorly understood. Here we show that the multi-functional dynein light chain (DYNLL1/LC8) plays important roles in the establishment of B-1a cells in the peritoneal cavity and in the ongoing development of B-2 lymphoid cells in the bone marrow of mice. Epistasis analyses indicate that Dynll1 regulates B-1a and early B-2 cell development in a single, linear pathway with its direct transcriptional activator ASCIZ (ATMIN/ZNF822), and that the two genes also have complementary functions during late B-2 cell development. The B-2 cell defects caused by loss of DYNLL1 were associated with lower levels of the anti-apoptotic protein BCL-2, and could be supressed by deletion of pro-apoptotic BIM which is negatively regulated by both DYNLL1 and BCL-2. Defects in B cell development caused by loss of DYNLL1 could also be partially suppressed by a pre-arranged SW(HEL) Igm-B cell receptor transgene. In contrast to the rescue of B-2 cell numbers, the B-1a cell deficiency in Dynll1-deleted mice could not be suppressed by the loss of Bim, and was further compounded by the SW(HEL) transgene. Conversely, oncogenic MYC expression, which is synthetic lethal with Dynll1 deletion in B-2 cells, did not further reduce B-1a cell numbers in Dynll1-defcient mice. Finally, we found that the ASCIZ-DYNLL1 axis was also required for the early-juvenile development of aggressive MYC-driven and p53-deficient B cell lymphomas. These results identify ASCIZ and DYNLL1 as the core of a transcriptional circuit that differentially regulates the development of the B-1a and B-2 B lymphoid cell lineages and plays a critical role in lymphomagenesis.
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spelling pubmed-56198402017-10-17 Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms King, Ashleigh Li, Lingli Wong, David M. Liu, Rui Bamford, Rebecca Strasser, Andreas Tarlinton, David M. Heierhorst, Jörg PLoS Genet Research Article Mechanistic differences in the development and function of adaptive, high-affinity antibody-producing B-2 cells and innate-like, “natural” antibody-producing B-1a cells remain poorly understood. Here we show that the multi-functional dynein light chain (DYNLL1/LC8) plays important roles in the establishment of B-1a cells in the peritoneal cavity and in the ongoing development of B-2 lymphoid cells in the bone marrow of mice. Epistasis analyses indicate that Dynll1 regulates B-1a and early B-2 cell development in a single, linear pathway with its direct transcriptional activator ASCIZ (ATMIN/ZNF822), and that the two genes also have complementary functions during late B-2 cell development. The B-2 cell defects caused by loss of DYNLL1 were associated with lower levels of the anti-apoptotic protein BCL-2, and could be supressed by deletion of pro-apoptotic BIM which is negatively regulated by both DYNLL1 and BCL-2. Defects in B cell development caused by loss of DYNLL1 could also be partially suppressed by a pre-arranged SW(HEL) Igm-B cell receptor transgene. In contrast to the rescue of B-2 cell numbers, the B-1a cell deficiency in Dynll1-deleted mice could not be suppressed by the loss of Bim, and was further compounded by the SW(HEL) transgene. Conversely, oncogenic MYC expression, which is synthetic lethal with Dynll1 deletion in B-2 cells, did not further reduce B-1a cell numbers in Dynll1-defcient mice. Finally, we found that the ASCIZ-DYNLL1 axis was also required for the early-juvenile development of aggressive MYC-driven and p53-deficient B cell lymphomas. These results identify ASCIZ and DYNLL1 as the core of a transcriptional circuit that differentially regulates the development of the B-1a and B-2 B lymphoid cell lineages and plays a critical role in lymphomagenesis. Public Library of Science 2017-09-18 /pmc/articles/PMC5619840/ /pubmed/28922373 http://dx.doi.org/10.1371/journal.pgen.1007010 Text en © 2017 King et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
King, Ashleigh
Li, Lingli
Wong, David M.
Liu, Rui
Bamford, Rebecca
Strasser, Andreas
Tarlinton, David M.
Heierhorst, Jörg
Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title_full Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title_fullStr Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title_full_unstemmed Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title_short Dynein light chain regulates adaptive and innate B cell development by distinctive genetic mechanisms
title_sort dynein light chain regulates adaptive and innate b cell development by distinctive genetic mechanisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5619840/
https://www.ncbi.nlm.nih.gov/pubmed/28922373
http://dx.doi.org/10.1371/journal.pgen.1007010
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