bcl-2的抗凋亡活性与血管成熟和人内皮细胞的转录调节有关。

David R Enis, Benjamin Dunmore, Nicola Johnson, Jordan S Pober, Cristin G Print
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引用次数: 9

摘要

在植入免疫缺陷小鼠的人脐静脉内皮细胞(ECs)中过度表达caspase抗性形式的Bcl-2 (D34A),可促进小鼠来源的血管平滑肌细胞(VSMCs)投资的人脐静脉内衬微血管的成熟。相比之下,不过度表达Bcl-2的EC植入物仅形成简单的无涂层EC管。在这里,作者比较了EC体内形成的血管表型和体外表达不同形式Bcl-2的转录组。野生型Bcl-2,如抗caspase的D34A Bcl-2突变体,在体外抗凋亡并促进体内VSMC募集,而G145E突变体在体外抗凋亡活性降低,在体内不促进血管成熟。Bcl-2的D34A和野生型,而不是G145E突变型,显著调节先前与EC-VSMC相互作用和VSMC生物学相关的RNA转录物,包括基质Gla蛋白、胰岛素样生长因子结合蛋白(IGFBP)-2、基质金属蛋白酶(MMP)-14、ADAM17、stanniocalcin-1,以及核因子(NF)-kappa B、cAMP反应元件结合(CREB)和激活蛋白1 (AP1)转录因子家族的靶标。Bcl-2对转录组的这些影响在作为血管生成三维(3d)管培养的内皮细胞中被检测到,但在作为二维单层培养的内皮细胞中被减弱。内皮细胞中bcl -2调控的转录可能有助于血管成熟,并支持利用内皮细胞设计组织工程策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antiapoptotic activities of bcl-2 correlate with vascular maturation and transcriptional modulation of human endothelial cells.

Overexpression of a caspase-resistant form of Bcl-2 (D34A) in human umbilical vein endothelial cells (ECs) implanted into immunodeficient mice promotes the maturation of human EC-lined microvessels invested by vascular smooth muscle cells (VSMCs) of mouse origin. In contrast, EC implants not overexpressing Bcl-2 form only simple, uncoated EC tubes. Here the authors compare the phenotypes of vessels formed in vivo and the transcriptomes in vitro of EC expressing different forms of Bcl-2. Wild-type Bcl-2, like the caspase-resistant D34A Bcl-2 mutant, is antiapoptotic in vitro and promotes VSMC recruitment in vivo, whereas a G145E mutant that has diminished antiapoptotic activity in vitro does not promote vessel maturation in vivo. The D34A and wild-type forms of Bcl-2, but not the G145E mutant form of Bcl-2, significantly regulate RNA transcripts previously associated with EC-VSMC interactions and VSMC biology, including matrix Gla protein, insulin-like growth factor-binding protein (IGFBP)-2, matrix metalloproteinase (MMP)-14, ADAM17, stanniocalcin-1, and targets of the nuclear factor (NF)-kappa B, cAMP response element-binding (CREB), and activator protein 1 (AP1) transcription factor families. These effects of Bcl-2 on the transcriptome are detected in ECs cultured as angiogenic three-dimensional (3-D) tubes but are attenuated in ECs cultured as 2-D monolayers. Bcl-2-regulated transcription in ECs may contribute to vascular maturation, and support design of tissue engineering strategies using EC.

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