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JAK2/Y343/STAT5 signaling axis is required for erythropoietin-mediated protection against ischemic injury in primary renal tubular epithelial cells

机译:JAK2 / Y343 / STAT5信号轴是促红细胞生成素介导的抗原代肾小管上皮细胞缺血性损伤的保护所必需的

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摘要

Erythropoietin has emerged as a potential therapy for the treatment of ischemic tissue injury. In erythroid cells, the JAK2/Y343/STAT5 signaling axis has been shown to be necessary for stress but not steady-state erythropoiesis. The requirement for STAT5 activation in erythropoietin-mediated protection from ischemic injury has not been well-studied. To answer this question, we induced reproducible necrotic ischemic injury in primary mouse renal tubular epithelial cells (RTEC) in vitro. Using RTEC from erythropoietin receptor mutant mice with differential STAT5 signaling capabilities, we demonstrated first, that EPO administration either before or during injury significantly protects against mild-moderate but not severe necrotic cell death; and second, the JAK2/Y343/STAT5 signaling axis is required for protection against ischemic injury in primary mouse RTEC. In addition, we identified Pim-3, a prosurvival STAT5 target gene, as responsive to EPO in the noninjured kidney both in vitro and in vivo.
机译:促红细胞生成素已经成为治疗缺血性组织损伤的潜在疗法。在红系细胞中,已显示JAK2 / Y343 / STAT5信号转导轴对于应激是必需的,但不是稳态红细胞生成。尚未充分研究促红细胞生成素介导的缺血损伤保护中STAT5激活的要求。为了回答这个问题,我们在体外诱导了原代小鼠肾小管上皮细胞(RTEC)的可再生坏死性缺血损伤。首先,我们使用具有差异STAT5信号传导能力的促红细胞生成素受体突变小鼠的RTEC,我们证明,在损伤之前或过程中给予EPO可以显着防止轻度中度而非严重坏死性细胞死亡。其次,JAK2 / Y343 / STAT5信号转轴是保护原发小鼠RTEC免受缺血性损伤所必需的。此外,我们确定了Pim-3(一种存活的STAT5靶基因)在体外和体内对未受伤肾脏中的EPO都有反应。

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