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Citations to this article

Lnk constrains myeloproliferative diseases in mice
Alexey Bersenev, … , Kudakwashe R. Chikwava, Wei Tong
Alexey Bersenev, … , Kudakwashe R. Chikwava, Wei Tong
Published May 10, 2010
Citation Information: J Clin Invest. 2010;120(6):2058-2069. https://doi.org/10.1172/JCI42032.
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Research Article Hematology

Lnk constrains myeloproliferative diseases in mice

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Abstract

Hematopoietic stem and progenitor cell (HSPC) expansion is regulated by intrinsic signaling pathways activated by cytokines. The intracellular kinase JAK2 plays an essential role in cytokine signaling, and activating mutations in JAK2 are found in a number of hematologic malignancies. We previously demonstrated that lymphocyte adaptor protein (Lnk, also known as Sh2b3) binds JAK2 and attenuates its activity, thereby limiting HSPC expansion. Here we show that loss of Lnk accelerates and exacerbates oncogenic JAK2-induced myeloproliferative diseases (MPDs) in mice. Specifically, Lnk deficiency enhanced cytokine-independent JAK/STAT signaling and augmented the ability of oncogenic JAK2 to expand myeloid progenitors in vitro and in vivo. An activated form of JAK2, unable to bind Lnk, caused greater myeloid expansion than activated JAK2 alone and accelerated myelofibrosis, indicating that Lnk directly inhibits oncogenic JAK2 in constraining MPD development. In addition, Lnk deficiency cooperated with the BCR/ABL oncogene, the product of which does not directly interact with or depend on JAK2 or Lnk, in chronic myeloid leukemia (CML) development, suggesting that Lnk also acts through endogenous pathways to constrain HSPCs. Consistent with this idea, aged Lnk–/– mice spontaneously developed a CML-like MPD. Taken together, our data establish Lnk as a bona fide suppressor of MPD in mice and raise the possibility that Lnk dysfunction contributes to the development of hematologic malignancies in humans.

Authors

Alexey Bersenev, Chao Wu, Joanna Balcerek, Jiang Jing, Mondira Kundu, Gerd A. Blobel, Kudakwashe R. Chikwava, Wei Tong

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Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 Total
Citations: 1 1 1 4 6 5 2 3 3 4 3 3 7 9 9 1 1 63
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