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LNK/SH2B3调节正常和恶性B祖细胞中的IL-7受体信号传导。

LNK/SH2B3 regulates IL-7 receptor signaling in normal and malignant B-progenitors.

作者信息

Cheng Ying, Chikwava Kudakwashe, Wu Chao, Zhang Haibing, Bhagat Anchit, Pei Dehua, Choi John K, Tong Wei

出版信息

J Clin Invest. 2016 Apr 1;126(4):1267-81. doi: 10.1172/JCI81468. Epub 2016 Mar 14.

Abstract

Philadelphia chromosome-like acute lymphoblastic leukemia (Ph-like ALL) is a high-risk ALL commonly associated with alterations that affect the tyrosine kinase pathway, tumor suppressors, and lymphoid transcription factors. Loss-of-function mutations in the gene-encoding adaptor protein LNK (also known as SH2B3) are found in Ph-like ALLs; however, it is not clear how LNK regulates normal B cell development or promotes leukemogenesis. Here, we have shown that combined loss of Lnk and tumor suppressors Tp53 or Ink4a/Arf in mice triggers a highly aggressive and transplantable precursor B-ALL. Tp53-/-Lnk-/- B-ALLs displayed similar gene expression profiles to human Ph-like B-ALLs, supporting use of this model for preclinical and molecular studies. Preleukemic Tp53-/-Lnk-/- pro-B progenitors were hypersensitive to IL-7, exhibited marked self-renewal in vitro and in vivo, and were able to initiate B-ALL in transplant recipients. Mechanistically, we demonstrated that LNK regulates pro-B progenitor homeostasis by attenuating IL-7-stimuated JAK/STAT5 signaling via a direct interaction with phosphorylated JAK3. Moreover, JAK inhibitors were effective in prolonging survival of mice transplanted with Lnk-/-Tp53-/- leukemia. Additionally, synergistic administration of PI3K/mTOR and JAK inhibitors further abrogated leukemia development. Hence, our results suggest that LNK suppresses IL-7R/JAK/STAT signaling to restrict pro-/pre-B progenitor expansion and leukemia development, providing a pathogenic mechanism and a potential therapeutic approach for B-ALLs with LNK mutations.

摘要

费城染色体样急性淋巴细胞白血病(Ph样ALL)是一种高危ALL,通常与影响酪氨酸激酶途径、肿瘤抑制因子和淋巴样转录因子的改变相关。在Ph样ALL中发现了编码衔接蛋白LNK(也称为SH2B3)的基因功能缺失突变;然而,尚不清楚LNK如何调节正常B细胞发育或促进白血病发生。在这里,我们表明,小鼠中Lnk与肿瘤抑制因子Tp53或Ink4a/Arf的联合缺失会引发高度侵袭性且可移植的前体B-ALL。Tp53-/-Lnk-/- B-ALL表现出与人类Ph样B-ALL相似的基因表达谱,支持将该模型用于临床前和分子研究。白血病前期Tp53-/-Lnk-/-前B祖细胞对IL-7高度敏感,在体外和体内均表现出显著的自我更新能力,并能够在移植受体中引发B-ALL。从机制上讲,我们证明LNK通过与磷酸化的JAK3直接相互作用减弱IL-7刺激的JAK/STAT5信号传导,从而调节前B祖细胞的稳态。此外,JAK抑制剂可有效延长移植Lnk-/-Tp53-/-白血病的小鼠的生存期。此外,PI3K/mTOR和JAK抑制剂的联合给药进一步消除了白血病的发展。因此,我们的结果表明,LNK抑制IL-7R/JAK/STAT信号传导以限制前B/前体B祖细胞的扩增和白血病发展,为具有LNK突变的B-ALL提供了致病机制和潜在的治疗方法。

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