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Quantitatively controlling expression of miR-17~92 determines colon tumor progression in a mouse tumor model.定量控制miR-17~92的表达可决定小鼠肿瘤模型中结肠癌的进展。
Am J Pathol. 2014 May;184(5):1355-68. doi: 10.1016/j.ajpath.2014.01.037. Epub 2014 Mar 27.
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MicroRNA-92a upholds Bmp signaling by targeting noggin3 during pharyngeal cartilage formation.微小 RNA-92a 通过靶向咽弓软骨形成过程中的 noggin3 来维持 Bmp 信号通路。
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Site-specific microRNA-92a regulation of Kruppel-like factors 4 and 2 in atherosusceptible endothelium.靶向 microRNA-92a 调控易损性血管内皮 Kruppel 样因子 4 和 2。
Arterioscler Thromb Vasc Biol. 2012 Apr;32(4):979-87. doi: 10.1161/ATVBAHA.111.244053. Epub 2012 Jan 19.
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Use of the mouse aortic ring assay to study angiogenesis.利用小鼠主动脉环 assay 研究血管生成。
Nat Protoc. 2011 Dec 22;7(1):89-104. doi: 10.1038/nprot.2011.435.
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Frizzled 4 regulates arterial network organization through noncanonical Wnt/planar cell polarity signaling.卷曲蛋白 4 通过非经典 Wnt/平面细胞极性信号调节动脉网络组织。
Circ Res. 2012 Jan 6;110(1):47-58. doi: 10.1161/CIRCRESAHA.111.250936. Epub 2011 Nov 10.
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Therapeutic inhibition of miR-208a improves cardiac function and survival during heart failure.治疗性抑制 miR-208a 可改善心力衰竭期间的心脏功能和存活率。
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miR-17~92 cooperates with RB pathway mutations to promote retinoblastoma.miR-17~92 与 RB 通路突变协同促进视网膜母细胞瘤。
Genes Dev. 2011 Aug 15;25(16):1734-45. doi: 10.1101/gad.17027411. Epub 2011 Aug 4.
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A cooperative microRNA-tumor suppressor gene network in acute T-cell lymphoblastic leukemia (T-ALL).急性 T 细胞淋巴细胞白血病(T-ALL)中协同的 microRNA-肿瘤抑制基因网络。
Nat Genet. 2011 Jun 5;43(7):673-8. doi: 10.1038/ng.858.
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The miR-17-92 microRNA cluster regulates multiple components of the TGF-β pathway in neuroblastoma.miR-17-92 微 RNA 簇在神经母细胞瘤中调控 TGF-β 通路的多个组分。
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The myc-miR-17~92 axis blunts TGF{beta} signaling and production of multiple TGF{beta}-dependent antiangiogenic factors.myc-miR-17~92 轴抑制 TGF{beta}信号通路和多种 TGF{beta}-依赖性抗血管生成因子的产生。
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内皮细胞的miR-17∼92簇通过miRNA-19对WNT信号通路的抑制作用来负向调节动脉生成。

Endothelial miR-17∼92 cluster negatively regulates arteriogenesis via miRNA-19 repression of WNT signaling.

作者信息

Landskroner-Eiger Shira, Qiu Cong, Perrotta Paola, Siragusa Mauro, Lee Monica Y, Ulrich Victoria, Luciano Amelia K, Zhuang Zhen W, Corti Federico, Simons Michael, Montgomery Rusty L, Wu Dianqing, Yu Jun, Sessa William C

机构信息

Vascular Biology and Therapeutics Program, Yale University School of Medicine, New Haven, CT 06520; Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06520;

Vascular Biology and Therapeutics Program, Yale University School of Medicine, New Haven, CT 06520; Yale Cardiovascular Research Center, Department of Internal Medicine (Cardiology), Yale University School of Medicine, New Haven, CT 06520;

出版信息

Proc Natl Acad Sci U S A. 2015 Oct 13;112(41):12812-7. doi: 10.1073/pnas.1507094112. Epub 2015 Sep 28.

DOI:10.1073/pnas.1507094112
PMID:26417068
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4611600/
Abstract

The contribution of endothelial-derived miR-17∼92 to ischemia-induced arteriogenesis has not been investigated in an in vivo model. In the present study, we demonstrate a critical role for the endothelial-derived miR-17∼92 cluster in shaping physiological and ischemia-triggered arteriogenesis. Endothelial-specific deletion of miR-17∼92 results in an increase in collateral density limbs and hearts and in ischemic limbs compared with control mice, and consequently improves blood flow recovery. Individual cluster components positively or negatively regulate endothelial cell (EC) functions in vitro, and, remarkably, ECs lacking the cluster spontaneously form cords in a manner rescued by miR-17a, -18a, and -19a. Using both in vitro and in vivo analyses, we identified FZD4 and LRP6 as targets of miR-19a/b. Both of these targets were up-regulated in 17∼92 KO ECs compared with control ECs, and both were shown to be targeted by miR-19 using luciferase assays. We demonstrate that miR-19a negatively regulates FZD4, its coreceptor LRP6, and WNT signaling, and that antagonism of miR-19a/b in aged mice improves blood flow recovery after ischemia and reduces repression of these targets. Collectively, these data provide insights into miRNA regulation of arterialization and highlight the importance of vascular WNT signaling in maintaining arterial blood flow.

摘要

内皮源性miR-17∼92对缺血诱导的动脉生成的作用尚未在体内模型中进行研究。在本研究中,我们证明了内皮源性miR-17∼92簇在塑造生理性和缺血触发的动脉生成中起关键作用。与对照小鼠相比,内皮特异性缺失miR-17∼92导致肢体和心脏以及缺血肢体的侧支密度增加,从而改善血流恢复。单个簇成分在体外对内皮细胞(EC)功能具有正向或负向调节作用,并且值得注意的是,缺乏该簇的EC以一种可被miR-17a、-18a和-19a挽救的方式自发形成索状结构。通过体外和体内分析,我们确定FZD4和LRP6为miR-19a/b的靶标。与对照EC相比,这两个靶标在17∼92基因敲除EC中均上调,并且使用荧光素酶测定法显示二者均被miR-19靶向。我们证明miR-19a负向调节FZD4、其共受体LRP6和WNT信号通路,并且在老年小鼠中拮抗miR-19a/b可改善缺血后的血流恢复并减少对这些靶标的抑制。总体而言,这些数据为miRNA对动脉形成的调节提供了见解,并突出了血管WNT信号通路在维持动脉血流中的重要性。