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Changes in Smad expression and subcellular localization in bleomycin-induced pulmonary fibrosis.

机译:博来霉素诱导的肺纤维化中Smad表达和亚细胞定位的变化。

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摘要

Administration of bleomycin (BM) produces inflammation and fibrosis of the lung in humans and experimental animals. The molecular defects by which BM induces these pathological effects have not been studied in detail. We studied the expression of Smad family proteins, key molecules involved in mediating transforming growth factor (TGF)-_ signaling from the cell membrane to the nucleus, during the early and late phases of BM-induced fibrogenesis. Pulmonary fibrosis was induced in male Sprague-Dawley rats by a single intratracheal injection (1.5 units) of BM. Control rats received saline. Rats were killed at 3, 5, 7, 14, and 28 days after BM, cytosolic and nuclear proteins were extracted and isolated from lung tissues,\udand Smad proteins were probed with specific antibodies. In BMexposed lung tissue, compared with control, Smad3 decreased persistently in the cytosol and increased transiently in the nucleus. There was a persistent increase in phosphorylation and nuclear accumulation of Smad2/3. Smad4 was increased transiently in both the cytosol and nucleus. A significant and progressive decrease in the expression of Smad7, the endogenous inhibitor of TGF-_/Smad signaling, was observed after BM instillation. Collectively, our results indicate that\udan imbalance between agonistic Smads2–4 and antagonistic Smad7 may result in the unchecked activation of an autocrine TGF-_ loop, which contributes to the pathogenesis of BM-induced pulmonary fibrosis.
机译:博来霉素(BM)的使用会在人和实验动物中产生肺部炎症和纤维化。尚未详细研究BM诱导这些病理效应的分子缺陷。我们研究了Smad家族蛋白的表达,Smad家族蛋白是在BM诱导的纤维发生的早期和晚期阶段,介导从细胞膜到细胞核的转化生长因子(TGF)-_信号传导的关键分子。通过气管内单次注射BM(1.5单位)在雄性Sprague-Dawley大鼠中诱发肺纤维化。对照大鼠接受盐水。在BM后第3、5、7、14和28天处死大鼠,从肺组织中提取并分离胞质和核蛋白,并用特异性抗体探测Smad蛋白。与对照相比,在暴露于BM的肺组织中,Smad3在细胞质中持续减少,在细胞核中短暂增加。 Smad2 / 3的磷酸化和核积累持续增加。 Smad4在细胞质和细胞核中均短暂增加。 BM滴注后,观察到Smad7(TGF -_ / Smad信号转导的内源性抑制剂)的表达显着和进行性降低。总体而言,我们的研究结果表明,激动性Smads2-4和拮抗性Smad7之间的乌丹不平衡可能导致自分泌TGF-_环不受抑制的激活,这有助于BM诱导的肺纤维化的发病机理。

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