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- W2000932571 endingPage "e1001576" @default.
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- W2000932571 abstract "Recent descriptions of significant heterogeneity in normal stem cells and cancers have altered our understanding of tumorigenesis, emphasizing the need to understand how single stem cells are subverted to cause tumors. Human myeloproliferative neoplasms (MPNs) are thought to reflect transformation of a hematopoietic stem cell (HSC) and the majority harbor an acquired V617F mutation in the JAK2 tyrosine kinase, making them a paradigm for studying the early stages of tumor establishment and progression. The consequences of activating tyrosine kinase mutations for stem and progenitor cell behavior are unclear. In this article, we identify a distinct cellular mechanism operative in stem cells. By using conditional knock-in mice, we show that the HSC defect resulting from expression of heterozygous human JAK2V617F is both quantitative (reduced HSC numbers) and qualitative (lineage biases and reduced self-renewal per HSC). The defect is intrinsic to individual HSCs and their progeny are skewed toward proliferation and differentiation as evidenced by single cell and transplantation assays. Aged JAK2V617F show a more pronounced defect as assessed by transplantation, but mice that transform reacquire competitive self-renewal ability. Quantitative analysis of HSC-derived clones was used to model the fate choices of normal and JAK2-mutant HSCs and indicates that JAK2V617F reduces self-renewal of individual HSCs but leaves progenitor expansion intact. This conclusion is supported by paired daughter cell analyses, which indicate that JAK2-mutant HSCs more often give rise to two differentiated daughter cells. Together these data suggest that acquisition of JAK2V617F alone is insufficient for clonal expansion and disease progression and causes eventual HSC exhaustion. Moreover, our results show that clonal expansion of progenitor cells provides a window in which collaborating mutations can accumulate to drive disease progression. Characterizing the mechanism(s) of JAK2V617F subclinical clonal expansions and the transition to overt MPNs will illuminate the earliest stages of tumor establishment and subclone competition, fundamentally shifting the way we treat and manage cancers." @default.
- W2000932571 created "2016-06-24" @default.
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- W2000932571 date "2013-06-04" @default.
- W2000932571 modified "2023-09-25" @default.
- W2000932571 title "Self-Renewal of Single Mouse Hematopoietic Stem Cells Is Reduced by JAK2V617F Without Compromising Progenitor Cell Expansion" @default.
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- W2000932571 cites W1967036569 @default.
- W2000932571 cites W1974139477 @default.
- W2000932571 cites W1977997116 @default.
- W2000932571 cites W1978652970 @default.
- W2000932571 cites W1979812265 @default.
- W2000932571 cites W1980568348 @default.
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- W2000932571 cites W1981240373 @default.
- W2000932571 cites W1982488237 @default.
- W2000932571 cites W1983836084 @default.
- W2000932571 cites W1989543257 @default.
- W2000932571 cites W1991885817 @default.
- W2000932571 cites W1993481241 @default.
- W2000932571 cites W1997560018 @default.
- W2000932571 cites W2011712807 @default.
- W2000932571 cites W2012962381 @default.
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- W2000932571 cites W2018776134 @default.
- W2000932571 cites W2019070944 @default.
- W2000932571 cites W2020160910 @default.
- W2000932571 cites W2029318743 @default.
- W2000932571 cites W2029818817 @default.
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- W2000932571 cites W2054753195 @default.
- W2000932571 cites W2054792541 @default.
- W2000932571 cites W2055096888 @default.
- W2000932571 cites W2056526927 @default.
- W2000932571 cites W2057129764 @default.
- W2000932571 cites W2057360098 @default.
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- W2000932571 doi "https://doi.org/10.1371/journal.pbio.1001576" @default.
- W2000932571 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/3672217" @default.
- W2000932571 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23750118" @default.
- W2000932571 hasPublicationYear "2013" @default.
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