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沃尔夫-赫希霍恩综合征候选基因1样蛋白1通过表观遗传调控肾足蛋白基因表达。

Wolf-Hirschhorn syndrome candidate 1-like 1 epigenetically regulates nephrin gene expression.

作者信息

Ito Yugo, Katayama Kan, Nishibori Yukino, Akimoto Yoshihiro, Kudo Akihiko, Kurayama Ryota, Hada Ichiro, Takahashi Shohei, Kimura Toru, Fukutomi Toshiyuki, Katada Tomohisa, Suehiro Junichi, Beltcheva Olga, Tryggvason Karl, Yan Kunimasa

机构信息

Department of Pediatrics, Kyorin University School of Medicine, Mitaka, Tokyo, Japan.

Department of Medical Biochemistry and Biophysics, Division of Matrix Biology, Karolinska Institute, Stockholm, Sweden.

出版信息

Am J Physiol Renal Physiol. 2017 Jun 1;312(6):F1184-F1199. doi: 10.1152/ajprenal.00305.2016. Epub 2017 Feb 22.

DOI:10.1152/ajprenal.00305.2016
PMID:28228401
Abstract

Altered expression of nephrin underlies the pathophysiology of proteinuria in both congenital and acquired nephrotic syndrome. However, the epigenetic mechanisms of nephrin gene regulation remain elusive. Here, we show that Wolf-Hirschhorn syndrome candidate 1-like 1 long form (WHSC1L1-L) is a novel epigenetic modifier of nephrin gene regulation. WHSC1L1-L was associated with histone H3K4 and H3K36 in human embryonic kidney cells. WHSC1L1-L gene was expressed in the podocytes, and functional protein product was detected in these cells. WHSC1L1-L was found to bind nephrin but not other podocyte-specific gene promoters, leading to its inhibition/suppression, abrogating the stimulatory effect of WT1 and NF-κB. Gene knockdown of WHSC1L1-L in primary cultured podocytes accelerated the transcription of nephrin but not CD2AP. An in vivo zebrafish study involving the injection of Whsc1l1 mRNA into embryos demonstrated an apparent reduction of nephrin mRNA but not podocin and CD2AP mRNA. Immunohistochemistry showed that both WHSC1L1-L and nephrin emerged at the S-shaped body stage in glomeruli. Immunofluorescence and confocal microscopy displayed WHSC1L1 to colocalize with trimethylated H3K4 in the glomerular podocytes. Chromatin immunoprecipitation assay revealed the reduction of the association of trimethylated H3K4 at the nephrin promoter regions. Finally, nephrin mRNA was upregulated in the glomerulus at the early proteinuric stage of mouse nephrosis, which was associated with the reduction of WHSC1L1. In conclusion, our results demonstrate that WHSC1L1-L acts as a histone methyltransferase in podocytes and regulates nephrin gene expression, which may in turn contribute to the integrity of the slit diaphragm of the glomerular filtration barrier.

摘要

在先天性和获得性肾病综合征中,nephrin表达改变是蛋白尿病理生理学的基础。然而,nephrin基因调控的表观遗传机制仍不清楚。在此,我们表明Wolf-Hirschhorn综合征候选基因1样1长形式(WHSC1L1-L)是nephrin基因调控的一种新型表观遗传修饰因子。在人胚肾细胞中,WHSC1L1-L与组蛋白H3K4和H3K36相关。WHSC1L1-L基因在足细胞中表达,并在这些细胞中检测到功能性蛋白质产物。发现WHSC1L1-L结合nephrin,但不结合其他足细胞特异性基因启动子,导致其抑制/抑制,消除WT1和NF-κB的刺激作用。在原代培养的足细胞中敲低WHSC1L1-L基因可加速nephrin的转录,但不加速CD2AP的转录。一项涉及向胚胎注射Whsc1l1 mRNA的体内斑马鱼研究表明,nephrin mRNA明显减少,但podocin和CD2AP mRNA未减少。免疫组织化学显示,WHSC1L1-L和nephrin在肾小球的S形阶段出现。免疫荧光和共聚焦显微镜显示WHSC1L1与肾小球足细胞中的三甲基化H3K4共定位。染色质免疫沉淀分析显示nephrin启动子区域三甲基化H3K4的结合减少。最后,在小鼠肾病蛋白尿早期阶段,肾小球中nephrin mRNA上调,这与WHSC1L1的减少有关。总之,我们的结果表明,WHSC1L1-L在足细胞中作为组蛋白甲基转移酶发挥作用,并调节nephrin基因表达,这反过来可能有助于肾小球滤过屏障裂孔隔膜的完整性。

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