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Ewing sarcoma gene EWS is essential for meiosis and B lymphocyte development
Hongjie Li, Wendy Watford, Cuiling Li, Alissa Parmelee, Mark A. Bryant, Chuxia Deng, John O’Shea, Sean Bong Lee
Hongjie Li, Wendy Watford, Cuiling Li, Alissa Parmelee, Mark A. Bryant, Chuxia Deng, John O’Shea, Sean Bong Lee
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Research Article Development

Ewing sarcoma gene EWS is essential for meiosis and B lymphocyte development

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Abstract

Ewing sarcoma gene EWS encodes a putative RNA-binding protein with proposed roles in transcription and splicing, but its physiological role in vivo remains undefined. Here, we have generated Ews-deficient mice and demonstrated that EWS is required for the completion of B cell development and meiosis. Analysis of Ews–/– lymphocytes revealed a cell-autonomous defect in precursor B lymphocyte (pre–B lymphocyte) development. During meiosis, Ews-null spermatocytes were deficient in XY bivalent formation and showed reduced meiotic recombination, resulting in massive apoptosis and complete arrest in gamete maturation. Inactivation of Ews in mouse embryonic fibroblasts resulted in premature cellular senescence, and the mutant animals showed hypersensitivity to ionizing radiation. Finally, we showed that EWS interacts with lamin A/C and that loss of EWS results in a reduced lamin A/C expression. Our findings reveal essential functions for EWS in pre–B cell development and meiosis, with proposed roles in DNA pairing and recombination/repair mechanisms. Furthermore, we demonstrate a novel role of EWS in cellular senescence, possibly through its interaction and modulation of lamin A/C.

Authors

Hongjie Li, Wendy Watford, Cuiling Li, Alissa Parmelee, Mark A. Bryant, Chuxia Deng, John O’Shea, Sean Bong Lee

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Figure 4

Reduced meiotic recombination and XY asynapsis in Ews–/– spermatocytes.

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Reduced meiotic recombination and XY asynapsis in Ews–/– spermatocytes.
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(A) Double immunofluorescence staining of spermatocyte spread from 6-week-old testes with α-SCP3 and α-γH2AX antibodies. The arrowhead (left panel) shows a sex body containing bivalent XY, and the arrow (right panel) indicates univalent XY. Original magnification, ×40. (B) Univalent XY were counted under a fluorescence microscope and represented as the percentage of total pachytene nuclei examined (3 mice/genotype). n values represent total pachytene nuclei. (C) Double immunofluorescence staining of spermatocyte spread with α-SCP3 and α-MLH1 antibodies. The arrows in the right panel indicate bivalents with no MLH1 staining. Original magnification, ×40.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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