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Transcription factor old astrocyte specifically induced substance is a novel regulator of kidney fibrosis

机译:转录因子旧星形胶质细胞特异性诱导物质是一种新型肾纤维化调节因子

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Prevention of kidney fibrosis is an essential requisite for effective therapy in preventing chronic kidney disease (CKD). Here, we identify Old astrocyte specifically induced substance (OASIS)/cAMP responsive element‐binding protein 3‐like 1 (CREB3l1), a CREB/ATF family transcription factor, as a candidate profibrotic gene that drives the final common pathological step along the fibrotic pathway in CKD. Although microarray data from diseased patient kidneys and fibrotic mouse model kidneys both exhibit OASIS/Creb3l1 upregulation, the pathophysiological roles of OASIS in CKD remains unknown. Immunohistochemistry revealed that OASIS protein was overexpressed in human fibrotic kidney compared with normal kidney. Moreover, OASIS was upregulated in murine fibrotic kidneys, following unilateral ureteral obstruction (UUO), resulting in an increase in the number of OASIS‐expressing pathological myofibroblasts. In vitro assays revealed exogenous TGF‐β1 increased OASIS expression coincident with fibroblast‐to‐myofibroblast transition and OASIS contributed to TGF‐β1–mediated myofibroblast migration and increased proliferation. Significantly, in vivo kidney fibrosis induced via UUO or ischemia/reperfusion injury was ameliorated by systemic genetic knockout of OASIS , accompanied by reduced myofibroblast proliferation. Microarrays revealed that the transmembrane glycoprotein Bone marrow stromal antigen 2 (Bst2) expression was reduced in OASIS knockout myofibroblasts. Interestingly, a systemic anti‐Bst2 blocking antibody approach attenuated kidney fibrosis in normal mice but not in OASIS knockout mice after UUO, signifying Bst2 functions downstream of OASIS. Finally, myofibroblast‐restricted OASIS conditional knockouts resulted in resistance to kidney fibrosis. Taken together, OASIS in myofibroblasts promotes kidney fibrosis, at least in part, via increased Bst2 expression. Thus, we have identified and demonstrated that OASIS signaling is a novel regulator of kidney fibrosis.
机译:预防肾纤维化是有效治疗预防慢性肾病(CKD)的必要必要条件。在这里,我们确定旧星形胶质细胞特异性诱导物质(OASIS)/ cAMP反应元件结合蛋白3样1(CREB3L1),一个CREB ​​/ ATF家族转录因子,为候选促纤维化基因沿纤维化驱动器的最终共同病理步骤CKD的途径。虽然来自患病患者肾脏和纤维化小鼠模型肾的微阵列数据既具有表现出OASIS / CREB3L1上调,但OASI在CKD中的病理生理作用仍然未知。免疫组织化学表明,与正常肾脏相比,Oasis蛋白在人类纤维化肾中过表达。此外,在单侧输尿管阻塞(UUO)之后,在鼠纤维化肾上调的OASIS是上调的,导致绿洲的病理学肌纤维细胞的数量增加。体外测定揭示了外源的TGF-β1增加的绿洲表达与成纤维细胞 - 染色纤维细胞转变和OASIS导致TGF-β1介导的肌纤维细胞迁移和增加的增殖。值得注意的是,通过通过UUO或缺血/再灌注损伤诱导的体内肾纤维化,通过系统性遗传淘汰的OASIS,伴随着减少肌纤维细胞增殖。微阵列显示,在绿洲敲除肌纤维细胞中降低了跨膜糖蛋白骨髓基质抗原2(BST2)表达。有趣的是,一种全身抗BST2阻断抗体抗体探讨正常小鼠的肾纤维化,但在UUO之后不在绿洲敲除小鼠中,在绿洲下游表示BST2功能。最后,肌纤维细胞受限制的绿洲条件敲除导致抗肾纤维化。携带在一起,在肌纤维细胞中的绿洲至少部分地通过增加的BST2表达促进肾纤维化。因此,我们已经鉴定并证明了绿洲信号传导是一种新型肾纤维化调节因子。
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