Hospital Israelita Albert Einstein, São Paulo, Brazil; Centro de Pesquisa Experimental, Av Albert Einstein, 627. Morumbi, 2S/Bloco A, São Paulo, SP, CEP 05651-901, Brazil.
Hospital Israelita Albert Einstein, São Paulo, Brazil.
Differentiation. 2019 Sep-Oct;109:28-33. doi: 10.1016/j.diff.2019.08.001. Epub 2019 Aug 30.
Vascular smooth muscle cells (VSMC) are highly specialized, and exhibit a contractile phenotype when mature and fully differentiated, being responsible for vessel homeostasis and blood pressure control. In response to pro-atherogenic stimuli VSMC alter their state of differentiation, increase proliferation and migration, resulting in SMC phenotypes ranging from contractile to synthetic. This variability is observed in cell morphology and expression level of marker genes for differentiation status. There is growing evidence that bone morphogenetic protein (BMP) signaling is involved in vascular diseases, including atherosclerosis. Here, we evaluated in vitro the role of specific agonists/antagonists belonging to the BMP pathway on dedifferentiation of VSMC harvested during early stages of atherosclerosis. RESULTS: Comparing primary VSMC isolated from aortas of susceptible ApoE-/- animals fed 8 weeks of western diet with their littermate controls fed usual diet, we observed that recombinant BMP4 was able to reduce SM22-alpha and alpha actin gene expression indicating dedifferentiation was under way. Unexpectedly, treatment with recombinant Gremlin-1, a known BMP antagonist, also reduced 4-6.5 folds gene expression of SM22-alpha, alpha-actin and, calponin, exclusively in VSMC from ApoE-/- animals, independently on the diet consumed. CONCLUSION: Our data show that BMP4 is capable of modulating of SM22-alpha and alpha actin gene expression, indicative of cell dedifferentiation in VSMC. Additionally, we report for first time that Gremlin-1 acts independently of the BMP pathway and selectively on VSMC from susceptible animals, reducing the expression of all genes evaluated.
血管平滑肌细胞(VSMC)是高度特化的细胞,在成熟和完全分化时表现出收缩表型,负责血管稳态和血压控制。在受到促动脉粥样硬化刺激时,VSMC 改变其分化状态,增加增殖和迁移,导致 SMC 表型从收缩型到合成型不等。这种可变性表现在细胞形态和分化状态标志物基因的表达水平上。越来越多的证据表明,骨形态发生蛋白(BMP)信号通路参与了包括动脉粥样硬化在内的血管疾病。在这里,我们评估了 BMP 通路的特定激动剂/拮抗剂在动脉粥样硬化早期采集的 VSMC 去分化中的体外作用。结果:比较了从喂食 8 周西方饮食的易感 ApoE-/-动物主动脉中分离的原代 VSMC 与其喂食常规饮食的同窝对照,我们观察到重组 BMP4 能够降低 SM22-α和α肌动蛋白基因的表达,表明去分化正在进行。出乎意料的是,重组 Gremlin-1(一种已知的 BMP 拮抗剂)的处理也使 SM22-α、α-肌动蛋白和钙调蛋白的基因表达降低了 4-6.5 倍,仅在 ApoE-/-动物的 VSMC 中,而与所消耗的饮食无关。结论:我们的数据表明,BMP4 能够调节 SM22-α和α肌动蛋白基因的表达,表明 VSMC 中的细胞去分化。此外,我们首次报道 Gremlin-1 独立于 BMP 通路并选择性地作用于易感动物的 VSMC,降低了所有评估基因的表达。