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High Levels of SOX5 Decrease Proliferative Capacity of Human B Cells, but Permit Plasmablast Differentiation

Currently very little is known about the differential expression and function of the transcription factor SOX5 during B cell maturation. We identified two new splice variants of SOX5 in human B cells, encoding the known L-SOX5B isoform and a new shorter isoform L-SOX5F. The SOX5 transcripts are high...

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Detalles Bibliográficos
Autores principales: Rakhmanov, Mirzokhid, Sic, Heiko, Kienzler, Anne-Kathrin, Fischer, Beate, Rizzi, Marta, Seidl, Maximilian, Melkaoui, Kerstina, Unger, Susanne, Moehle, Luisa, Schmit, Nadine E., Deshmukh, Sachin D., Ayata, Cemil Korcan, Schuh, Wolfgang, Zhang, Zhibing, Cosset, François-Loic, Verhoeyen, Els, Peter, Hans-Hartmut, Voll, Reinhard E., Salzer, Ulrich, Eibel, Hermann, Warnatz, Klaus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063782/
https://www.ncbi.nlm.nih.gov/pubmed/24945754
http://dx.doi.org/10.1371/journal.pone.0100328
Descripción
Sumario:Currently very little is known about the differential expression and function of the transcription factor SOX5 during B cell maturation. We identified two new splice variants of SOX5 in human B cells, encoding the known L-SOX5B isoform and a new shorter isoform L-SOX5F. The SOX5 transcripts are highly expressed during late stages of B-cell differentiation, including atypical memory B cells, activated CD21(low) B cells and germinal center B cells of tonsils. In tonsillar sections SOX5 expression was predominantly polarized to centrocytes within the light zone. After in vitro stimulation, SOX5 expression was down-regulated during proliferation while high expression levels were permissible for plasmablast differentiation. Overexpression of L-SOX5F in human primary B lymphocytes resulted in reduced proliferation, less survival of CD138(neg) B cells, but comparable numbers of CD138(+)CD38(hi) plasmablasts compared to control cells. Thus, our findings describe for the first time a functional role of SOX5 during late B cell development reducing the proliferative capacity and thus potentially affecting the differentiation of B cells during the germinal center response.