Department of Infection, Immunity and Cardiovascular Disease, Medical School, University of Sheffield, Sheffield, UK.
The Bateson Centre, Firth Court, University of Sheffield, Sheffield, UK.
EMBO Rep. 2019 Aug;20(8):e47047. doi: 10.15252/embr.201847047. Epub 2019 Jun 18.
We identify a novel endothelial membrane behaviour in transgenic zebrafish. Cerebral blood vessels extrude large transient spherical structures that persist for an average of 23 min before regressing into the parent vessel. We term these structures "kugeln", after the German for sphere. Kugeln are only observed arising from the cerebral vessels and are present as late as 28 days post fertilization. Kugeln do not communicate with the vessel lumen and can form in the absence of blood flow. They contain little or no cytoplasm, but the majority are highly positive for nitric oxide reactivity. Kugeln do not interact with brain lymphatic endothelial cells (BLECs) and can form in their absence, nor do they perform a scavenging role or interact with macrophages. Inhibition of actin polymerization, Myosin II, or Notch signalling reduces kugel formation, while inhibition of VEGF or Wnt dysregulation (either inhibition or activation) increases kugel formation. Kugeln represent a novel Notch-dependent NO-containing endothelial organelle restricted to the cerebral vessels, of currently unknown function.
我们在转基因斑马鱼中发现了一种新的血管内皮膜行为。大脑血管会向外突出大的、短暂的球形结构,这些结构平均持续 23 分钟,然后再回归到母体血管中。我们将这些结构称为“kugeln”,德语中意为球体。kugeln 仅在大脑血管中观察到,并且在受精后 28 天仍然存在。kugeln 与血管腔不连通,并且可以在没有血流的情况下形成。它们几乎不含细胞质,但大多数对一氧化氮反应性呈高度阳性。kugeln 与脑淋巴内皮细胞(BLECs)不相互作用,在没有它们的情况下也能形成,它们也不发挥清除作用或与巨噬细胞相互作用。肌动蛋白聚合、肌球蛋白 II 或 Notch 信号通路的抑制会减少 kugeln 的形成,而 VEGF 或 Wnt 失调的抑制(抑制或激活)会增加 kugeln 的形成。kugeln 代表了一种新型的 Notch 依赖性含有 NO 的内皮细胞器,仅局限于大脑血管,其目前的功能未知。