Barnes Jarrod W, Kucera Elif T, Tian Liping, Mellor Noël E, Dvorina Nina, Baldwin William W, Aldred Micheala A, Farver Carol F, Comhair Suzy A A, Aytekin Metin, Dweik Raed A
Departments of 1 Pathobiology and.
2 Immunology, and.
Am J Respir Cell Mol Biol. 2016 Oct;55(4):564-575. doi: 10.1165/rcmb.2015-0402OC.
Altered bone morphogenic protein (BMP) signaling, independent of BMPR2 mutations, can result in idiopathic pulmonary arterial hypertension (IPAH). Glucose dysregulation can regulate multiple processes in IPAH. However, the role of glucose in BMP antagonist expression in IPAH has not been characterized. We hypothesized that glucose uptake regulates BMP signaling through stimulation of BMP antagonist expression in IPAH. Using human plasma, lung tissue, and primary pulmonary arterial smooth muscle cells (PASMCs), we examined the protein expression of BMP2, BMP-regulated Smads, and Smurf-1 in patients with IPAH and control subjects. Gremlin-1 levels were elevated in patients with IPAH compared with control subjects, whereas expression of BMP2 was not different. We demonstrate increased Smad polyubiquitination in IPAH lung tissue and PASMCs that was further enhanced with proteasomal inhibition. Examination of the Smad ubiquitin-ligase, Smurf-1, showed increased protein expression in IPAH lung tissue and localization in the smooth muscle of the pulmonary artery. Glucose dose dependently increased Smurf-1 protein expression in control PASMCs, whereas Smurf-1 in IPAH PASMCs was increased and sustained. Conversely, phospho-Smad1/5/8 levels were reduced in IPAH compared with control PASMCs at physiological glucose concentrations. Interestingly, high glucose concentrations decreased phosphorylation of Smad1/5/8 in control PASMCs. Blocking glucose uptake had opposing effects in IPAH PASMCs, and inhibition of Smurf-1 activity resulted in partial rescue of Smad1/5/8 activation and cell migration rates. Collectively, these data suggest that BMP signaling can be regulated through BMPR2 mutation-independent mechanisms. Gremlin-1 (synonym: induced-in-high-glucose-2 protein) and Smurf-1 may function to inhibit BMP signaling as a consequence of the glucose dysregulation described in IPAH.
骨形态发生蛋白(BMP)信号改变,不依赖于BMPR2突变,可导致特发性肺动脉高压(IPAH)。葡萄糖调节异常可调节IPAH中的多个过程。然而,葡萄糖在IPAH中BMP拮抗剂表达中的作用尚未明确。我们假设葡萄糖摄取通过刺激IPAH中BMP拮抗剂的表达来调节BMP信号。使用人血浆、肺组织和原代肺动脉平滑肌细胞(PASMCs),我们检测了IPAH患者和对照受试者中BMP2、BMP调节的Smads和Smurf-1的蛋白表达。与对照受试者相比,IPAH患者的Gremlin-1水平升高,而BMP2的表达无差异。我们证明IPAH肺组织和PASMCs中Smad多聚泛素化增加,蛋白酶体抑制进一步增强。对Smad泛素连接酶Smurf-1的检测显示,IPAH肺组织中蛋白表达增加,且定位于肺动脉平滑肌。葡萄糖剂量依赖性地增加对照PASMCs中Smurf-1蛋白表达,而IPAH PASMCs中的Smurf-1增加并持续存在。相反,在生理葡萄糖浓度下,与对照PASMCs相比,IPAH中磷酸化的Smad1/5/8水平降低。有趣的是,高葡萄糖浓度降低了对照PASMCs中Smad1/5/8的磷酸化。阻断葡萄糖摄取在IPAH PASMCs中产生相反的作用,抑制Smurf-1活性导致Smad1/5/8激活和细胞迁移率部分恢复。总体而言,这些数据表明BMP信号可通过不依赖BMPR2突变的机制进行调节。Gremlin-1(同义词:高糖诱导蛋白2)和Smurf-1可能作为IPAH中所述葡萄糖调节异常的结果,发挥抑制BMP信号的作用。
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