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早期生长反应因子-1 的丝氨酸 26 对血管内皮细胞的增殖、迁移和网络形成至关重要。

Serine 26 in Early Growth Response-1 Is Critical for Endothelial Proliferation, Migration, and Network Formation.

机构信息

Vascular Biology and Translational Research School of Medical Sciences UNSW Medicine and HealthUniversity of New South Wales Sydney NSW Australia.

出版信息

J Am Heart Assoc. 2021 Sep 21;10(18):e020521. doi: 10.1161/JAHA.120.020521. Epub 2021 Sep 3.

Abstract

Background Vascular endothelial cell proliferation, migration, and network formation are key proangiogenic processes involving the prototypic immediate early gene product, Egr-1 (early growth response-1). Egr-1 undergoes phosphorylation at a conserved Ser26 but its function is completely unknown in endothelial cells or any other cell type. Methods and Results A CRISPR/Cas9 strategy was used to introduce a homozygous Ser26>Ala mutation into endogenous Egr-1 in human microvascular endothelial cells. In the course of generating mutant cells, we produced cells with homozygous deletion in caused by frameshift and premature termination. We found that Ser26 mutation in Egr-1, or Egr-1 deletion, perturbed endothelial cell proliferation in models of cell counting or real-time growth using the xCELLigence System. We found that Ser26 mutation or Egr-1 deletion ameliorated endothelial cell migration toward VEGF-A (vascular endothelial growth factor-A) in a dual-chamber model. On solubilized basement membrane preparations, Ser26 mutation or Egr-1 deletion prevented endothelial network (or tubule) formation, an in vitro model of angiogenesis. Flow cytometry further revealed that Ser26 mutation or Egr-1 deletion elevated early and late apoptosis. Finally, we demonstrated that Ser26 mutation or Egr-1 deletion increased VE-cadherin (vascular endothelial cadherin) expression, a regulator of endothelial adhesion and signaling, permeability, and angiogenesis. Conclusions These findings not only indicate that Egr-1 is essential for endothelial cell proliferation, migration, and network formation, but also show that point mutation in Ser26 is sufficient to impair each of these processes and trigger apoptosis as effectively as the absence of Egr-1. This highlights the importance of Ser26 in Egr-1 for a range of proangiogenic processes.

摘要

背景

血管内皮细胞的增殖、迁移和网络形成是涉及原初早期基因产物 Egr-1(早期生长反应-1)的关键促血管生成过程。Egr-1 在保守的 Ser26 位点发生磷酸化,但在血管内皮细胞或任何其他细胞类型中,其功能完全未知。

方法和结果

使用 CRISPR/Cas9 策略将内源性 Egr-1 的 Ser26 突变为 Ala 突变。在产生突变细胞的过程中,我们产生了由于移码和过早终止而导致的 Ser26 缺失的纯合子细胞。我们发现 Egr-1 的 Ser26 突变或 Egr-1 缺失,破坏了细胞计数或使用 xCELLigence 系统实时生长模型中的内皮细胞增殖。我们发现 Ser26 突变或 Egr-1 缺失改善了内皮细胞向 VEGF-A(血管内皮生长因子-A)的迁移,这是血管生成的体外模型。在可溶性基底膜制剂上,Ser26 突变或 Egr-1 缺失阻止了内皮细胞网络(或小管)形成,这是血管生成的体外模型。流式细胞术进一步揭示了 Ser26 突变或 Egr-1 缺失导致早期和晚期细胞凋亡增加。最后,我们证明了 Ser26 突变或 Egr-1 缺失增加了 VE-钙粘蛋白(血管内皮钙粘蛋白)的表达,VE-钙粘蛋白是内皮细胞黏附和信号转导、通透性和血管生成的调节因子。

结论

这些发现不仅表明 Egr-1 对于内皮细胞的增殖、迁移和网络形成是必需的,而且表明 Ser26 点突变足以损害这些过程中的每一个,并有效地触发凋亡,就像 Egr-1 缺失一样。这突出了 Ser26 在 Egr-1 促进一系列促血管生成过程中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8e5/8649526/e51a97ce9ca2/JAH3-10-e020521-g008.jpg

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