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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Epigenetic Regulation of KL (Klotho) via H3K27me3 (Histone 3 Lysine [K] 27 Trimethylation) in Renal Tubule Cells
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Epigenetic Regulation of KL (Klotho) via H3K27me3 (Histone 3 Lysine [K] 27 Trimethylation) in Renal Tubule Cells

机译:肾小管细胞H3K27ME3(组蛋白3赖氨酸[K] 27三甲基化)k1(klotho)的表观遗传调节

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KL (klotho) levels decline with age, which is an important mechanistic driver of aging. KL gene deficiency is associated with hypertension. The purpose of this study is to investigate the potential role of H3K27me3 (histone 3 lysine [K] 27 trimethylation) in the regulation of KL gene expression and examine the related molecular pathways that may drive kidney cell aging. Kidneys were collected from 6-month-old WT (wild type; young WT), 30-month-old WT (aged WT), and 6- (young) and 20-month-old (aged) KL mutant mice, respectively. We demonstrated that the H3K27me3 level was increased in kidneys of aged WT and KL mutant mice versus young WT mice. Elevation of H3K27me3 levels was likely due to downregulation of the H3K27 (histone H3 Lys 27)-specific demethylase JMJD3 (the Jumonji domain containing-3) in the aged kidneys. Inhibition of PRC2 (polycomb repressive complex C2; histone trimethyltransferase) decreased the H3K27me3 levels leading to an increase in the expression of KL in cultured primary renal tubule cells assessed by Western blot and KL promoter activity assays. The chromatin immunoprecipitation qPCR assay revealed that H3K27me3 was physically associated with the KL promoter region. Furthermore, aging impaired the SGK1 (serum- and glucocorticoid-induced protein kinase 1)/FOXO3a (the forkhead box class O 3a) signaling leading to upregulation of p53 and p16 (aging markers) in the kidney of aged WT mice. KL may regulate the SGK1/FOXO3 signaling, which was decreased due to KL deficiency. Thus, aging-associated downregulation of KL gene expression may be partly attributed to upregulation of H3K27me3 levels. Downregulation of KL may impair the SGK1/FOXO3 signaling contributing to kidney cell aging.
机译:KL(Klotho)水平随着年龄的增长而下降,这是老龄化的重要机制司机。 KL基因缺乏与高血压有关。本研究的目的是研究H3K27ME3(组蛋白3赖氨酸[K] 27三甲基化)在KL基因表达调节中的潜在作用,并检查可能驱动肾细胞老化的相关分子途径。从6个月大的WT(野生型;年轻WT),30个月大(WT)和6-(年轻)和20个月大(年龄)KL突变小鼠的肾脏收集。我们证明,老化的WT和KL突变小鼠与年轻WT小鼠的肾脏中H3K27ME3水平增加。 H3K27ME3水平的升高可能是由于在老化的肾脏中的H3K27(组蛋白H3 L7)的下调(组蛋白H3 Lys 27)的特异性去甲基酶JMJD3(Jumonji结构域)。 PRC2(Polycomb压抑复合C2;组蛋白三甲基转移酶)的抑制降低了H3K27ME3水平,导致Western印迹和KL启动子活性测定评估的培养的原代肾小管细胞中K1的表达增加。染色质免疫沉淀QPCR测定显示H3K27ME3与KL启动子区域物理相关。此外,老化损害了SGK1(血清和糖皮质激素诱导的蛋白激酶1)/ FOXO3A(FORKHEAD盒级别O 3A)信号传导,导致在老化的WT小鼠的肾脏上的p53和p16(老化标志物)上调。 KL可以调节SGK1 / FOXO3信号传导,由于KL缺乏,减少。因此,KL基因表达的老化相关的下调可以部分地归因于H3K27ME3水平的上调。 KL的下调可能会损害有助于肾细胞老化的SGK1 / FOXO3信号传导。

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