Department of Surgery College of Medicine The Ohio State University Columbus OH.
Department of Physiology & Cell Biology College of Medicine The Ohio State University Columbus OH.
J Am Heart Assoc. 2020 Apr 21;9(8):e015487. doi: 10.1161/JAHA.119.015487. Epub 2020 Apr 19.
Background Vascular smooth muscle cell phenotypic change and consequential intimal hyperplasia (IH) cause arterial stenosis and posttreatment restenosis. Smad3 is a master transcription factor, yet its underlying functional mechanisms in this disease context are not well defined. Methods and Results In cultured smooth muscle cells, Smad3 silencing and overexpression respectively reduced and increased the mRNA and protein of NRP2 (neuropilin 2), a recently reported pro-IH signaling factor. Smad3 silencing attenuated pro-IH smooth muscle cell phenotypes including proliferation, migration, and dedifferentiation (reduced smooth muscle α-actin). While increased Smad3 enhanced these phenotypes, NRP2 silencing abolished this enhancement. Interestingly, the 5' untranslated region but not the promoter of NRP2 was indispensable for Smad3-enhanced transcriptional activity (luciferase assay); both chromatin immunoprecipitation and electrophoretic mobility shift assay showed predominant Smad3 binding in the +51 to +78 bp region of NRP2's 5' untranslated region. In vivo, Smad3 haploinsufficiency reduced NRP2 (immunostaining) and IH (by 47%) in wire-injured mouse femoral arteries. Conclusions Smad3 controls NRP2 expression by occupying its 5' untranslated region in promoting smooth muscle cell phenotypic change in vitro. This and in vivo results shed new light on the long-debated role of Smad3 in IH.
背景 血管平滑肌细胞表型改变和随之而来的内膜增生(IH)导致动脉狭窄和治疗后再狭窄。Smad3 是一个主要的转录因子,但它在这种疾病背景下的潜在功能机制尚未明确。
方法和结果 在培养的平滑肌细胞中,Smad3 沉默和过表达分别降低和增加了 NR P2(神经纤毛蛋白 2)的 mRNA 和蛋白,NR P2 是最近报道的一种促 IH 信号因子。Smad3 沉默减弱了促 IH 平滑肌细胞表型,包括增殖、迁移和去分化(减少平滑肌 α-肌动蛋白)。而增加 Smad3 增强了这些表型,NR P2 沉默则消除了这种增强。有趣的是,NR P2 的 5'非翻译区而不是启动子对于 Smad3 增强的转录活性是必不可少的(荧光素酶检测);染色质免疫沉淀和电泳迁移率变动分析显示 Smad3 主要结合在 NR P2 的 5'非翻译区的+51 到+78bp 区域。在体内,Smad3 杂合不足减少了 wire 损伤的小鼠股动脉中的 NR P2(免疫染色)和 IH(减少 47%)。
结论 Smad3 通过占据其 5'非翻译区来控制 NR P2 的表达,从而促进体外平滑肌细胞表型改变。这些体内外结果为 Smad3 在 IH 中的长期争论角色提供了新的视角。