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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Constitutively active AKT depletes hematopoietic stem cells and induces leukemia in mice.
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Constitutively active AKT depletes hematopoietic stem cells and induces leukemia in mice.

机译:组成型活性AKT耗竭造血干细胞并诱发小鼠白血病。

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Human cancers, including acute myeloid leukemia (AML), commonly display constitutive phosphoinositide 3-kinase (PI3K) AKT signaling. However, the exact role of AKT activation in leukemia and its effects on hematopoietic stem cells (HSCs) are poorly understood. Several members of the PI3K pathway, phosphatase and tensin homolog (Pten), the forkhead box, subgroup O (FOXO) transcription factors, and TSC1, have demonstrated functions in normal and leukemic stem cells but are rarely mutated in leukemia. We developed an activated allele of AKT1 that models increased signaling in normal and leukemic stem cells. In our murine bone marrow transplantation model using a myristoylated AKT1 (myr-AKT), recipients develop myeloproliferative disease, T-cell lymphoma, or AML. Analysis of the HSCs in myr-AKT mice reveals transient expansion and increased cycling, associated with impaired engraftment. myr-AKT-expressing bone marrow cells are unable to form cobblestones in long-term cocultures. Rapamycin, an inhibitor of the mammalian target of rapamycin (mTOR) rescues cobblestone formation in myr-AKT-expressing bone marrow cells and increases the survival of myr-AKT mice. This study demonstrates that enhanced AKT activation is an important mechanism of transformation in AML and that HSCs are highly sensitive to excess AKT/mTOR signaling.
机译:人类癌症,包括急性髓细胞性白血病(AML),通常表现出组成型磷酸肌醇3激酶(PI3K)AKT信号传导。然而,人们对AKT激活在白血病中的确切作用及其对造血干细胞(HSC)的影响了解甚少。 PI3K途径的几个成员,磷酸酶和张力蛋白同源物(Pten),叉头盒,O亚型(FOXO)转录因子和TSC1在正常和白血病干细胞中已显示出功能,但在白血病中很少发生突变。我们开发了AKT1的激活等位基因,该基因可模拟正常和白血病干细胞中增加的信号传导。在使用肉豆蔻酰化的AKT1(myr-AKT)的鼠类骨髓移植模型中,受体会发展成骨髓增生性疾病,T细胞淋巴瘤或AML。对myr-AKT小鼠中的HSC的分析显示,短暂的扩张和增加的循环与移植物受损有关。在长期共培养中,表达myr-AKT的骨髓细胞无法形成鹅卵石。雷帕霉素是雷帕霉素(mTOR)哺乳动物靶标的抑制剂,可挽救表达myr-AKT的骨髓细胞中鹅卵石的形成,并提高myr-AKT小鼠的存活率。这项研究表明增强的AKT激活是AML中转化的重要机制,并且HSC对过量的AKT / mTOR信号高度敏感。

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