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Enhanced anti-apoptosis and gut epithelium protection function of acidic fibroblast growth factor after cancelling of its mitogenic activity

机译:酸性成纤维细胞生长因子消除有丝分裂活性后增强的抗凋亡和肠道上皮保护功能

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AIM: Mitogenic and non-mitogenic activities of fibroblast growth factor (FGF) are coupled to a range of biological functions, from cell proliferation and differentiation to the onset of many diseases. Recent reports have shown that acidic fibroblast growth factor (aFGF) has a powerful anti-apoptosis function, which may have potentially therapeutical effect on gut ischemia and reperfusion injuries. However, whether this function depends on its mitogenic or non-mitogenic activity remains unclear. In this study, we identified the source of its anti-apoptosis function with a mutant, aFGF28-154 and observed its effect on reducing gut ischemia and reperfusion injury. METHODS! aFGF28-154 was generated by amplification of appropriate DNA fragments followed by subcloning the products into pET-3c vectors, then they were expressed in BL21 (DE3) cells and purified on an M2 agarose affinity column. This mutant aFGF28-154 maintained its non-mitogenic activity and lost its mitogenic activity. With a dexamethasone (DEX)-induced mouse thymocyte apoptosis model in vitro and in vivo, we studied the anti-apoptotic function of aFGF28-154. Also, in vivo study was performed to further confirm whether aFGF28-154 could significantly reduce apoptosis in gut epithelium after gut ischemia-reperfusion injury in rats. Based on these studies, the possible signal transduction pathways involved were studied. RESULTS: With a dexamethasone (DEX)-induced mouse thymocyte apoptosis model in vitro and in vivo, we found that the anti-apoptotic function of aFGF28-154 was significantly enhanced when compared with the wild type aFGF. In vivo study further confirmed that aFGF28-154 significantly reduced apoptosis in gut epithelium after gut ischemia-reperfusion injury in rate. The mechanisms of anti-apoptosis function of aFGF28-154 did not depend on its mitogenic activity and were mainly associated with its non-mitogenic activities, including the intracellular calcium ion balance protection, ERK1/2 activation sustaining and cell cycle balance. CONCLUSION: These findings emphasize the importance of non-mitogenic effects of aFGF, and have implications for its therapeutic use in preventing apoptosis and other injuries in tissues and internal organs triggered by ischemia-reperfusion injury.
机译:目的:成纤维细胞生长因子(FGF)的有丝分裂和非有丝分裂活性与一系列生物学功能有关,从细胞增殖和分化到许多疾病的发作。最近的报道表明,酸性成纤维细胞生长因子(aFGF)具有强大的抗凋亡功能,可能对肠道缺血和再灌注损伤具有潜在的治疗作用。但是,该功能是否取决于其促有丝分裂活性还是非有丝分裂活性尚不清楚。在这项研究中,我们确定了其具有突变体aFGF28-154的抗凋亡功能的来源,并观察了其对减少肠道缺血和再灌注损伤的作用。方法!通过扩增适当的DNA片段,然后将产物亚克隆到pET-3c载体中来生成aFGF28-154,然后将它们在BL21(DE3)细胞中表达并在M2琼脂糖亲和柱上纯化。该突变体aFGF28-154保持其非促有丝分裂活性并丧失了其促有丝分裂活性。使用地塞米松(DEX)诱导的小鼠胸腺细胞体外和体内凋亡模型,我们研究了aFGF28-154的抗凋亡功能。另外,进行了体内研究以进一步证实aFGF28-154是否可以显着减少大鼠肠缺血-再灌注损伤后肠上皮的凋亡。基于这些研究,研究了可能涉及的信号转导途径。结果:在体外和体内地塞米松(DEX)诱导的小鼠胸腺细胞凋亡模型中,我们发现与野生型aFGF相比,aFGF28-154的抗凋亡功能显着增强。体内研究进一步证实,aFGF28-154显着降低了肠缺血再灌注损伤后肠上皮的凋亡。 aFGF28-154的抗凋亡功能的机制并不取决于其促有丝分裂活性,而主要与其非促有丝分裂活性有关,包括细胞内钙离子平衡保护,ERK1 / 2活化维持和细胞周期平衡。结论:这些发现强调了aFGF非促有丝分裂作用的重要性,并对其在预防缺血再灌注损伤引起的组织和内脏细胞凋亡和其他损伤的治疗用途中具有重要意义。

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