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本文引用的文献

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ATG5 can regulate p53 expression and activation.自噬相关基因5(ATG5)可调节p53的表达与激活。
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Emerging roles of the p38 MAPK and PI3K/AKT/mTOR pathways in oncogene-induced senescence.p38丝裂原活化蛋白激酶和PI3K/AKT/mTOR信号通路在癌基因诱导的衰老中的新作用。
Trends Biochem Sci. 2014 Jun;39(6):268-76. doi: 10.1016/j.tibs.2014.04.004. Epub 2014 May 9.
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Autophagy contributes to dasatinib-induced myeloid differentiation of human acute myeloid leukemia cells.自噬有助于达沙替尼诱导人急性髓系白血病细胞的髓样分化。
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Artesunate induces G2/M cell cycle arrest through autophagy induction in breast cancer cells.青蒿琥酯通过诱导乳腺癌细胞自噬导致G2/M期细胞周期阻滞。
Anticancer Drugs. 2014 Jul;25(6):652-62. doi: 10.1097/CAD.0000000000000089.
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Down-regulation of autophagy-related protein 5 (ATG5) contributes to the pathogenesis of early-stage cutaneous melanoma.自噬相关蛋白 5(ATG5)下调促进早期皮肤黑色素瘤的发病机制。
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ATG5 is induced by DNA-damaging agents and promotes mitotic catastrophe independent of autophagy.ATG5 可被 DNA 损伤试剂诱导,并通过非自噬途径促进有丝分裂灾难。
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p73 regulates autophagy and hepatocellular lipid metabolism through a transcriptional activation of the ATG5 gene.p73 通过转录激活 ATG5 基因来调节自噬和肝细胞脂质代谢。
Cell Death Differ. 2013 Oct;20(10):1415-24. doi: 10.1038/cdd.2013.104. Epub 2013 Aug 2.
8
Risk of hematologic toxicities in patients with solid tumors treated with everolimus: a systematic review and meta-analysis.实体瘤患者接受依维莫司治疗的血液学毒性风险:系统评价和荟萃分析。
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Emerging regulation and functions of autophagy.自噬的新兴调控与功能
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10
Autophagy plays a critical role in the degradation of active RHOA, the control of cell cytokinesis, and genomic stability.自噬在活性 RHOA 的降解、细胞胞质分裂的控制和基因组稳定性的维持中起着关键作用。
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骨髓中嗜中性粒细胞的生成受自噬控制。

The generation of neutrophils in the bone marrow is controlled by autophagy.

作者信息

Rožman S, Yousefi S, Oberson K, Kaufmann T, Benarafa C, Simon H U

机构信息

Institute of Pharmacology, University of Bern, Bern CH-3010, Switzerland.

Theodor Kocher Institute, University of Bern, Bern CH-3012, Switzerland.

出版信息

Cell Death Differ. 2015 Mar;22(3):445-56. doi: 10.1038/cdd.2014.169. Epub 2014 Oct 17.

DOI:10.1038/cdd.2014.169
PMID:25323583
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4326574/
Abstract

Autophagy has been demonstrated to have an essential function in several cellular hematopoietic differentiation processes, for example, the differentiation of reticulocytes. To investigate the role of autophagy in neutrophil granulopoiesis, we studied neutrophils lacking autophagy-related (Atg) 5, a gene encoding a protein essential for autophagosome formation. Using Cre-recombinase mediated gene deletion, Atg5-deficient neutrophils showed no evidence of abnormalities in morphology, granule protein content, apoptosis regulation, migration, or effector functions. In such mice, however, we observed an increased proliferation rate in the neutrophil precursor cells of the bone marrow as well as an accelerated process of neutrophil differentiation, resulting in an accumulation of mature neutrophils in the bone marrow, blood, spleen, and lymph nodes. To directly study the role of autophagy in neutrophils, we employed an in vitro model of differentiating neutrophils that allowed modulating the levels of ATG5 expression, or, alternatively, intervening pharmacologically with autophagy-regulating drugs. We could show that autophagic activity correlated inversely with the rate of neutrophil differentiation. Moreover, pharmacological inhibition of p38 MAPK or mTORC1 induced autophagy in neutrophilic precursor cells and blocked their differentiation, suggesting that autophagy is negatively controlled by the p38 MAPK-mTORC1 signaling pathway. On the other hand, we obtained no evidence for an involvement of the PI3K-AKT or ERK1/2 signaling pathways in the regulation of neutrophil differentiation. Taken together, these findings show that, in contrast to erythropoiesis, autophagy is not essential for neutrophil granulopoiesis, having instead a negative impact on the generation of neutrophils. Thus, autophagy and differentiation exhibit a reciprocal regulation by the p38-mTORC1 axis.

摘要

自噬已被证明在多种细胞造血分化过程中具有重要作用,例如网织红细胞的分化。为了研究自噬在中性粒细胞生成中的作用,我们研究了缺乏自噬相关(Atg)5的中性粒细胞,Atg5是一种编码自噬体形成所必需蛋白质的基因。利用Cre重组酶介导的基因缺失,Atg5缺陷的中性粒细胞在形态、颗粒蛋白含量、凋亡调控、迁移或效应功能方面均未显示出异常迹象。然而,在这类小鼠中,我们观察到骨髓中性粒细胞前体细胞的增殖速率增加,以及中性粒细胞分化过程加速,导致成熟中性粒细胞在骨髓、血液、脾脏和淋巴结中积累。为了直接研究自噬在中性粒细胞中的作用,我们采用了一种体外分化中性粒细胞的模型,该模型允许调节ATG5的表达水平,或者用自噬调节药物进行药理学干预。我们可以证明自噬活性与中性粒细胞分化速率呈负相关。此外,p38丝裂原活化蛋白激酶(MAPK)或哺乳动物雷帕霉素靶蛋白复合物1(mTORC1)的药理学抑制在嗜中性前体细胞中诱导自噬并阻断其分化,这表明自噬受p38 MAPK-mTORC1信号通路的负调控。另一方面,我们没有发现PI3K-AKT或ERK1/2信号通路参与中性粒细胞分化调控的证据。综上所述,这些发现表明,与红细胞生成不同,自噬对中性粒细胞生成并非必不可少,反而对中性粒细胞的产生有负面影响。因此,自噬和分化通过p38-mTORC1轴呈现相互调节作用。