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G-CSF supplementation with chemotherapy can promote revascularization and subsequent tumor regrowth: prevention by a CXCR4 antagonist.化疗联合 G-CSF 治疗可促进血管再生及随后的肿瘤复发:CXCR4 拮抗剂的预防作用。
Blood. 2011 Sep 22;118(12):3426-35. doi: 10.1182/blood-2010-11-320812. Epub 2011 Jun 17.
2
Granulocyte-colony stimulating factor promotes lung metastasis through mobilization of Ly6G+Ly6C+ granulocytes.粒细胞集落刺激因子通过动员 Ly6G+Ly6C+粒细胞促进肺转移。
Proc Natl Acad Sci U S A. 2010 Dec 14;107(50):21248-55. doi: 10.1073/pnas.1015855107. Epub 2010 Nov 16.
3
Targeting the tumour vasculature: insights from physiological angiogenesis.靶向肿瘤血管:生理性血管生成的见解。
Nat Rev Cancer. 2010 Jul;10(7):505-14. doi: 10.1038/nrc2868.
4
From basic research to clinical development of MEK1/2 inhibitors for cancer therapy.从基础研究到 MEK1/2 抑制剂在癌症治疗中的临床开发。
J Hematol Oncol. 2010 Feb 11;3:8. doi: 10.1186/1756-8722-3-8.
5
STATs in cancer inflammation and immunity: a leading role for STAT3.信号转导和转录激活因子在癌症炎症与免疫中的作用:信号转导和转录激活因子3起主导作用
Nat Rev Cancer. 2009 Nov;9(11):798-809. doi: 10.1038/nrc2734.
6
Bone marrow derived cells in tumor angiogenesis and growth: are they the good, the bad or the evil?骨髓来源细胞在肿瘤血管生成与生长中的作用:它们是有益、有害还是邪恶的?
Biochim Biophys Acta. 2009 Aug;1796(1):1-4. doi: 10.1016/j.bbcan.2009.07.002.
7
The chemokine Bv8/prokineticin 2 is up-regulated in inflammatory granulocytes and modulates inflammatory pain.趋化因子Bv8/促动蛋白2在炎性粒细胞中上调,并调节炎性疼痛。
Proc Natl Acad Sci U S A. 2009 Aug 25;106(34):14646-51. doi: 10.1073/pnas.0903720106. Epub 2009 Aug 10.
8
G-CSF-initiated myeloid cell mobilization and angiogenesis mediate tumor refractoriness to anti-VEGF therapy in mouse models.在小鼠模型中,粒细胞集落刺激因子(G-CSF)启动的髓系细胞动员和血管生成介导了肿瘤对抗血管内皮生长因子(VEGF)治疗的难治性。
Proc Natl Acad Sci U S A. 2009 Apr 21;106(16):6742-7. doi: 10.1073/pnas.0902280106. Epub 2009 Apr 3.
9
Characterization and regulation of bv8 in human blood cells.人类血细胞中bv8的特性与调控
Clin Cancer Res. 2009 Apr 15;15(8):2675-84. doi: 10.1158/1078-0432.CCR-08-1954. Epub 2009 Mar 31.
10
Myeloid-derived suppressor cells as regulators of the immune system.髓源性抑制细胞作为免疫系统的调节因子。
Nat Rev Immunol. 2009 Mar;9(3):162-74. doi: 10.1038/nri2506.

粒细胞集落刺激因子诱导 CD11b+Gr1+ 细胞中 Bv8 的表达:Stat3 信号的关键作用。

Induction of Bv8 expression by granulocyte colony-stimulating factor in CD11b+Gr1+ cells: key role of Stat3 signaling.

机构信息

Genentech Inc, South San Francisco, California 94080, USA.

出版信息

J Biol Chem. 2012 Jun 1;287(23):19574-84. doi: 10.1074/jbc.M111.326801. Epub 2012 Apr 23.

DOI:10.1074/jbc.M111.326801
PMID:22528488
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3365993/
Abstract

Bv8, also known as prokineticin 2, has been characterized as an important mediator of myeloid cell mobilization and myeloid cell-dependent tumor angiogenesis. Bv8 expression is dramatically enhanced by G-CSF, both in vitro and in vivo. The mechanisms involved in such up-regulation remain unknown. Using pharmacological inhibitors that interfere with multiple signaling pathways known to be activated by G-CSF, we show that signal transducer and activator of transcription 3 (Stat3) activation is required for Bv8 up-regulation in mouse bone marrow cells, whereas other Stat family members and extracellular signal-regulated kinase (ERK) activation are not involved. We further identified CD11b(+) Gr1(+) myeloid cells as the primary cell population in which Stat3 signaling is activated by G-CSF. Bv8 expression induced by G-CSF was also significantly reduced by siRNA-mediated Stat3 knockdown. Moreover, chromatin immunoprecipitation studies indicate that G-CSF significantly induces binding of phospho-Stat3 to the Bv8 promoter, which was abolished by pretreatment with the Stat3 inhibitor WP1066. Luciferase assay confirmed that the phospho-Stat3 binding site is a functional enhancer of the Bv8 promoter. The key role of Stat3 signaling in regulating G-CSF-induced Bv8 expression was further confirmed by in vivo studies. We show that the regulation of Bv8 expression in human bone marrow cells is also Stat3 signaling-dependent. Stat3 is recognized as a key regulator of inflammation-dependent tumorigenesis. We propose that such a role of Stat3 reflects at least in part its ability to regulate Bv8 expression.

摘要

Bv8,也称为促动力蛋白 2,已被确定为髓样细胞动员和髓样细胞依赖性肿瘤血管生成的重要介质。Bv8 的表达在体内和体外均由 G-CSF 显著增强。涉及这种上调的机制尚不清楚。使用药理学抑制剂干扰已知被 G-CSF 激活的多种信号通路,我们表明信号转导和转录激活因子 3(Stat3)的激活对于 G-CSF 诱导的小鼠骨髓细胞中 Bv8 的上调是必需的,而其他 Stat 家族成员和细胞外信号调节激酶(ERK)的激活则不参与。我们进一步确定 CD11b(+)Gr1(+)髓样细胞是 G-CSF 激活 Stat3 信号的主要细胞群体。用 siRNA 介导的 Stat3 敲低也显著降低了 G-CSF 诱导的 Bv8 表达。此外,染色质免疫沉淀研究表明,G-CSF 显著诱导磷酸化 Stat3 与 Bv8 启动子结合,而 Stat3 抑制剂 WP1066 的预处理则消除了这种结合。荧光素酶测定证实磷酸化 Stat3 结合位点是 Bv8 启动子的功能性增强子。体内研究进一步证实了 Stat3 信号在调节 G-CSF 诱导的 Bv8 表达中的关键作用。我们表明,人类骨髓细胞中 Bv8 表达的调节也是 Stat3 信号依赖性的。Stat3 被认为是炎症依赖性肿瘤发生的关键调节剂。我们提出,Stat3 的这种作用至少部分反映了其调节 Bv8 表达的能力。