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Klotho 缺乏通过上调肾脏中的 RIG-I 增强缺氧诱导的 IFN-α/β 的表达。

Klotho deficiency intensifies hypoxia-induced expression of IFN-α/β through upregulation of RIG-I in kidneys.

机构信息

Department of Nephrology, Hiroshima University Hospital, Hiroshima, Japan.

Department of Stem Cell Biology and Medicine, Graduate School of Biomedical & Health Sciences, Hiroshima University, Hiroshima, Japan.

出版信息

PLoS One. 2021 Oct 21;16(10):e0258856. doi: 10.1371/journal.pone.0258856. eCollection 2021.

Abstract

Hypoxia is a common pathway to the progression of end-stage kidney disease. Retinoic acid-inducible gene I (RIG-I) encodes an RNA helicase that recognizes viruses including SARS-CoV2, which is responsible for the production of interferon (IFN)-α/β to prevent the spread of viral infection. Recently, RIG-I activation was found under hypoxic conditions, and klotho deficiency was shown to intensify the activation of RIG-I in mouse brains. However, the roles of these functions in renal inflammation remain elusive. Here, for in vitro study, the expression of RIG-I and IFN-α/β was examined in normal rat kidney (NRK)-52E cells incubated under hypoxic conditions (1% O2). Next, siRNA targeting RIG-I or scramble siRNA was transfected into NRK52E cells to examine the expression of RIG-I and IFN-α/β under hypoxic conditions. We also investigated the expression levels of RIG-I and IFN-α/β in 33 human kidney biopsy samples diagnosed with IgA nephropathy. For in vivo study, we induced renal hypoxia by clamping the renal artery for 10 min in wild-type mice (WT mice) and Klotho-knockout mice (Kl-/- mice). Incubation under hypoxic conditions increased the expression of RIG-I and IFN-α/β in NRK52E cells. Their upregulation was inhibited in NRK52E cells transfected with siRNA targeting RIG-I. In patients with IgA nephropathy, immunohistochemical staining of renal biopsy samples revealed that the expression of RIG-I was correlated with that of IFN-α/β (r = 0.57, P<0.001, and r = 0.81, P<0.001, respectively). The expression levels of RIG-I and IFN-α/β were upregulated in kidneys of hypoxic WT mice and further upregulation was observed in hypoxic Kl-/- mice. These findings suggest that hypoxia induces the expression of IFN-α/β through the upregulation of RIG-I, and that klotho deficiency intensifies this hypoxia-induced expression in kidneys.

摘要

缺氧是终末期肾病进展的常见途径。维甲酸诱导基因 I(RIG-I)编码一种 RNA 解旋酶,可识别包括 SARS-CoV2 在内的病毒,从而产生干扰素(IFN)-α/β 以阻止病毒感染的传播。最近,在缺氧条件下发现了 RIG-I 的激活,并且发现 klotho 缺乏会加剧小鼠大脑中 RIG-I 的激活。然而,这些功能在肾脏炎症中的作用仍不清楚。在这里,进行了体外研究,在 1%氧气的缺氧条件下(1% O2)检查了正常大鼠肾(NRK)-52E 细胞中 RIG-I 和 IFN-α/β 的表达。接下来,将靶向 RIG-I 的 siRNA 或 scramble siRNA 转染到 NRK52E 细胞中,以检查缺氧条件下 RIG-I 和 IFN-α/β 的表达。我们还研究了 33 例诊断为 IgA 肾病的人类肾活检样本中 RIG-I 和 IFN-α/β 的表达水平。进行了体内研究,通过夹闭野生型小鼠(WT 小鼠)和 Klotho 敲除小鼠(Kl-/- 小鼠)的肾动脉 10 分钟来诱导肾缺氧。NRK52E 细胞在缺氧条件下孵育会增加 RIG-I 和 IFN-α/β 的表达。用靶向 RIG-I 的 siRNA 转染的 NRK52E 细胞中,其上调受到抑制。在 IgA 肾病患者中,肾活检样本的免疫组织化学染色显示,RIG-I 的表达与 IFN-α/β 的表达相关(r = 0.57,P<0.001 和 r = 0.81,P<0.001)。缺氧 WT 小鼠肾脏中 RIG-I 和 IFN-α/β 的表达水平上调,并且在缺氧 Kl-/- 小鼠中观察到进一步上调。这些发现表明,缺氧通过上调 RIG-I 诱导 IFN-α/β 的表达,而 klotho 缺乏会加剧肾脏中这种缺氧诱导的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b573/8530307/000b8d861992/pone.0258856.g001.jpg

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