University of Utah, Division of Neonatology, Salt Lake City, UT 84108, USA.
Early Hum Dev. 2010 Dec;86(12):785-91. doi: 10.1016/j.earlhumdev.2010.08.026. Epub 2010 Sep 24.
Intrauterine growth restriction (IUGR) is associated with altered lung development in human and rat. The transcription factor PPARγ, is thought to contribute to lung development. PPARγ is activated by docosahexanoic acid (DHA). One contribution of PPARγ to lung development may be its direct regulation of chromatin modifying enzymes, such as Setd8. In this study, we hypothesized that IUGR would result in a gender-specific reduction in PPARγ, Setd8 and associated H4K20Me levels in the neonatal rat lung. Because DHA activates PPARγ, we also hypothesized that maternal DHA supplementation would normalize PPARγ, Setd8, and H4K20Me levels in the IUGR rat lung. We found that IUGR decreased PPARγ levels, with an associated decrease in Setd8 levels in both male and female rat lungs. Levels of the Setd8-dependent histone modification, H4K20Me, were reduced on the PPARγ gene in both males and females while whole lung H4K20Me was only reduced in male lung. Maternal DHA supplementation ameliorated these effects in offspring. We conclude that IUGR decreases lung PPARγ, Setd8 and PPARγ H4K20Me independent of gender, while decreasing whole lung H4K20Me in males only. These outcomes are offset by maternal DHA. We speculate that maintenance of the epigenetic milieu may be one role of PPARγ in the lung and suggests a novel benefit of maternal DHA supplementation in IUGR.
宫内生长受限 (IUGR) 与人类和大鼠的肺发育改变有关。转录因子过氧化物酶体增殖物激活受体 γ (PPARγ) 被认为有助于肺发育。PPARγ 被二十二碳六烯酸 (DHA) 激活。PPARγ 对肺发育的一个贡献可能是其对染色质修饰酶的直接调节,如 Setd8。在这项研究中,我们假设 IUGR 会导致新生大鼠肺中 PPARγ、Setd8 和相关 H4K20Me 水平出现性别特异性降低。由于 DHA 激活 PPARγ,我们还假设母体 DHA 补充会使 IUGR 大鼠肺中的 PPARγ、Setd8 和 H4K20Me 水平正常化。我们发现 IUGR 降低了 PPARγ 水平,同时雄性和雌性大鼠肺中的 Setd8 水平也随之降低。PPARγ 基因上 Setd8 依赖性组蛋白修饰 H4K20Me 的水平在雄性和雌性大鼠中均降低,而整个肺 H4K20Me 仅在雄性肺中降低。母体 DHA 补充改善了后代的这些影响。我们得出结论,IUGR 独立于性别降低肺 PPARγ、Setd8 和 PPARγ H4K20Me,而仅在雄性肺中降低整个肺 H4K20Me。这些结果被母体 DHA 抵消。我们推测,维持表观遗传环境可能是 PPARγ 在肺中的作用之一,并表明母体 DHA 补充在 IUGR 中的一个新益处。