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Fetal growth restriction alters transcription factor binding and epigenetic mechanisms of renal 11β-hydroxysteroid dehydrogenase type 2 in a sex-specific manner

机译:胎儿生长受限以性别特异性方式改变2型肾11β-羟类固醇脱氢酶的转录因子结合和表观遗传机制

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摘要

Intrauterine growth restriction (IUGR) increases the risk of serious adult morbidities such as hypertension. In an IUGR rat model of hypertension, we reported a persistent decrease in kidney 11β-hydroxysteroid dehydrogenase type 2 (11β-HSD2) mRNA and protein levels from birth through postnatal (P) day 21. This enzyme deficiency can lead to hypertension by limiting renal glucocorticoid deactivation. In the present study, we hypothesized that IUGR affects renal 11β-HSD2 epigenetic determinants of chromatin structure and alters key transcription factor binding to the 11β-HSD2 promoter in association with persistent downregulation of its mRNA expression. To test this hypothesis, we performed bilateral uterine artery ligation on embryonic day 19.5 pregnant rats and harvested kidneys at day 0 (P0) and P21. Key transcription factors that can affect 11β-HSD2 expression include transcriptional enhancers specificity protein 1 (SP1) and NF-κB p65 and transcriptional repressors early growth response factor (Egr-1) and NF-κB p50. Our most important findings were as follows: 1) IUGR significantly decreased SP1 and NF-κB (p65) binding to the 11β-HSD2 promoter in males, while it increased Egr-1 binding in females and NF-κB (p50) binding in males; 2) IUGR increased CpG methylation status, as well as modified the pattern of methylation in several CpG sites of 11β-HSD2 promoter at P0 also in a sex-specific manner; and 3) IUGR decreased trimethylation of H3K36 in exon 5 of 11β-HSD2 at P0 and P21 in both genders. We conclude that IUGR is associated with altered transcriptional repressor/activator binding in connection with increased methylation in the 11β-HSD2 promoter region in a sex-specific manner, possibly leading to decreased transcriptional activity. Furthermore, IUGR decreased trimethylation of H3K36 of the 11β-HSD2 gene in both genders, which is associated with decreased transcriptional elongation. We speculate that alterations in transcription factor binding and chromatin structure play a role in in utero reprogramming.
机译:宫内生长受限(IUGR)增加了严重成人疾病如高血压的风险。在IUGR高血压大鼠模型中,我们报道了从出生到出生后(P)第21天,肾脏11β-羟类固醇脱氢酶2型(11β-HSD2)mRNA和蛋白质水平持续下降。这种酶缺乏症可通过限制肾脏而导致高血压糖皮质激素失活。在本研究中,我们假设IUGR影响肾脏11β-HSD2表观遗传决定因子的染色质结构,并改变与11β-HSD2启动子结合的关键转录因子,并与其mRNA表达的持续下调有关。为了验证该假设,我们在胚胎第19.5天的怀孕大鼠上进行了双侧子宫动脉结扎,并在第0天(P0)和P21收获了肾脏。可能影响11β-HSD2表达的关键转录因子包括转录增强子特异性蛋白1(SP1)和NF-κBp65和转录抑制因子早期生长反应因子(Egr-1)和NF-κBp50。我们最重要的发现如下:1)IUGR显着降低了雄性中SP1和NF-κB(p65)与11β-HSD2启动子的结合,而增加了雌性中的Egr-1结合和雄性中NF-κB(p50)的结合。 ; 2)IUGR还以性别特异性方式增加了CpG甲基化状态,并改变了P0处11β-HSD2启动子的几个CpG位点的甲基化模式; 3)IUGR降低了11β-HSD2外显子5在P0和P21处H3K36的三甲基化。我们得出的结论是,IUGR与以性别特异性方式在11β-HSD2启动子区域中甲基化增强相关的转录抑制因子/激活因子结合改变,可能导致转录活性降低。此外,IUGR降低了两个性别中11β-HSD2基因的H3K36的三甲基化,这与转录伸长率降低有关。我们推测,转录因子结合和染色质结构的改变在子宫重编程中起作用。

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