Citation

  • Authors: Perez-Garcia, A., Ambesi-Impiombato, A., Hadler, M., Rigo, I., LeDuc, C. A., Kelly, K., Jalas, C., Paietta, E., Racevskis, J., Rowe, J. M., Tallman, M. S., Paganin, M., Basso, G., Tong, W., Chung, W. K., Ferrando, A. A.
  • Year: 2013
  • Journal: Blood 122 2425-32
  • Applications: in vitro / DNA / jetPEI
  • Cell type: HEK-293T
    Description: Human embryonic kidney Fibroblast
    Known as: HEK293T, 293T

Method

Virus production.

Abstract

The SH2B adaptor protein 3 (SH2B3) gene encodes a negative regulator of cytokine signaling with a critical role in the homeostasis of hematopoietic stem cells and lymphoid progenitors. Here, we report the identification of germline homozygous SH2B3 mutations in 2 siblings affected with developmental delay and autoimmunity, one in whom B-precursor acute lymphoblastic leukemia (ALL) developed. Mechanistically, loss of SH2B3 increases Janus kinase-signal transducer and activator of transcription signaling, promotes lymphoid cell proliferation, and accelerates leukemia development in a mouse model of NOTCH1-induced ALL. Moreover, extended mutation analysis showed homozygous somatic mutations in SH2B3 in 2 of 167 ALLs analyzed. Overall, these results demonstrate a Knudson tumor suppressor role for SH2B3 in the pathogenesis of ALL and highlight a possible link between genetic predisposition factors in the pathogenesis of autoimmunity and leukemogenesis.

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