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Endothelial cells dynamically compete for the tip cell position during angiogenic sprouting.内皮细胞在血管生成芽生过程中动态竞争尖端细胞位置。
Nat Cell Biol. 2010 Oct;12(10):943-53. doi: 10.1038/ncb2103. Epub 2010 Sep 26.
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Dynamics of endothelial cell behavior in sprouting angiogenesis.血管生成中内皮细胞行为的动力学。
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Identification and functional analysis of endothelial tip cell-enriched genes.鉴定和功能分析富含血管内皮尖端细胞的基因。
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Sema3E-Plexin D1 signaling drives human cancer cell invasiveness and metastatic spreading in mice.Sema3E-Plexin D1 信号通路促进人类癌细胞在小鼠体内的侵袭和转移扩散。
J Clin Invest. 2010 Aug;120(8):2684-98. doi: 10.1172/JCI42118. Epub 2010 Jul 26.
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Astrocyte hypoxic response is essential for pathological but not developmental angiogenesis of the retina.星形胶质细胞缺氧反应对视网膜病理性但非发育性血管生成至关重要。
Glia. 2010 Aug;58(10):1177-85. doi: 10.1002/glia.20997.
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Axon guidance molecules in vascular patterning.血管模式形成中的轴突导向分子。
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Microarray analysis of retinal endothelial tip cells identifies CXCR4 as a mediator of tip cell morphology and branching.视网膜内皮细胞前体细胞的微阵列分析鉴定出趋化因子受体 4(CXCR4)作为顶端细胞形态和分支的介质。
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The notch ligands Dll4 and Jagged1 have opposing effects on angiogenesis.Notch配体Dll4和Jagged1对血管生成具有相反的作用。
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VEGF and endothelial guidance in angiogenic sprouting.血管内皮生长因子与血管生成芽生中的血管内皮导向。
Organogenesis. 2008 Oct;4(4):241-6. doi: 10.4161/org.4.4.7414.
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Mechanisms of vessel branching: filopodia on endothelial tip cells lead the way.血管分支的机制:内皮尖端细胞上的丝状伪足起引导作用。
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Semaphorin 3E-Plexin-D1 信号通过反馈机制调节血管内皮生长因子在发育性血管生成中的功能。

Semaphorin 3E-Plexin-D1 signaling regulates VEGF function in developmental angiogenesis via a feedback mechanism.

机构信息

Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Genes Dev. 2011 Jul 1;25(13):1399-411. doi: 10.1101/gad.2042011.

DOI:10.1101/gad.2042011
PMID:21724832
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3134083/
Abstract

Blood vessel networks are typically formed by angiogenesis, a process in which new vessels form by sprouting of endothelial cells from pre-existing vessels. This process is initiated by vascular endothelial growth factor (VEGF)-mediated tip cell selection and subsequent angiogenic sprouting. Surprisingly, we found that VEGF directly controls the expression of Plexin-D1, the receptor for the traditional repulsive axon guidance cue, semaphorin 3E (Sema3E). Sema3E-Plexin-D1 signaling then negatively regulates the activity of the VEGF-induced Delta-like 4 (Dll4)-Notch signaling pathway, which controls the cell fate decision between tip and stalk cells. Using the mouse retina as a model system, we show that Plexin-D1 is selectively expressed in endothelial cells at the front of actively sprouting blood vessels and its expression is tightly controlled by VEGF secreted by surrounding tissues. Therefore, although the Sema3E secreted by retinal neurons is evenly distributed throughout the retina, Sema3E-Plexin-D1 signaling is spatially controlled by VEGF through its regulation of Plexin-D1. Moreover, we show that gain and loss of function of Sema3E and Plexin-D1 disrupts normal Dll4 expression, Notch activity, and tip/stalk cell distribution in the retinal vasculature. Finally, the retinal vasculature of mice lacking sema3E or plexin-D1 has an uneven growing front, a less-branched vascular network, and abnormal distribution of dll4-positive cells. Lowering Notch activity in the mutant mice can reverse this defect, solidifying the observation that Dll4-Notch signaling is regulated by Sema3E-Plexin-D1 and is required for its function in vivo. Together, these data reveal a novel role of Sema3E-Plexin-D1 function in modulating angiogenesis via a VEGF-induced feedback mechanism.

摘要

血管网络通常通过血管生成形成,这是一个新血管从预先存在的血管中内皮细胞出芽形成的过程。这个过程是由血管内皮生长因子(VEGF)介导的尖端细胞选择和随后的血管生成出芽启动的。令人惊讶的是,我们发现 VEGF 直接控制 Plexin-D1 的表达,Plexin-D1 是传统排斥性轴突导向线索 semaphorin 3E(Sema3E)的受体。Sema3E-Plexin-D1 信号随后负调控 VEGF 诱导的 Delta 样 4(Dll4)-Notch 信号通路的活性,该通路控制尖端和柄细胞之间的细胞命运决定。使用小鼠视网膜作为模型系统,我们表明 Plexin-D1 选择性地在活跃生长的血管前端的内皮细胞中表达,其表达受周围组织分泌的 VEGF 严格控制。因此,尽管视网膜神经元分泌的 Sema3E 均匀分布在整个视网膜中,但 Sema3E-Plexin-D1 信号通过其对 Plexin-D1 的调节,通过 VEGF 进行空间控制。此外,我们表明 Sema3E 和 Plexin-D1 的功能获得和丧失会破坏视网膜血管中正常的 Dll4 表达、Notch 活性和尖端/柄细胞分布。最后,缺乏 sema3E 或 plexin-D1 的小鼠视网膜血管具有不均匀的生长前端、分支较少的血管网络和异常分布的 dll4 阳性细胞。在突变小鼠中降低 Notch 活性可以逆转这种缺陷,这表明 Dll4-Notch 信号受到 Sema3E-Plexin-D1 的调节,并且在体内其功能需要 Sema3E-Plexin-D1。总之,这些数据揭示了 Sema3E-Plexin-D1 通过 VEGF 诱导的反馈机制在调节血管生成中的新作用。