Dicer抑制通过增加角化细胞中SUZ12水平和调节ITGAV水平来延迟伤口愈合。

IF 3.6 4区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Sushant Bhattacharya, Shruti Hazra, Malabika Datta
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引用次数: 0

摘要

伤口愈合延迟是与糖尿病相关的重要标志。我们实验室之前的一项研究发现,糖尿病大鼠损伤组织中的Dicer和mirna水平下降,伤口愈合基因水平改变。这些伤口愈合基因的综合调节因子被定位到PRC2 (polycomb repression complex 2)复合体上。在这里,我们发现Dicer抑制增加了PRC2复合物核心组分的转录水平,即Suz12 (zeste 12的抑制因子)和Ezh2 (zeste 2的增强子)以及Mtf2(金属反应元件结合转录因子2),它的附加亚基,并提高了HaCaT细胞中H3K27me3的水平。与正常大鼠相比,糖尿病大鼠损伤组织中也观察到这种增加模式。在HaCaT细胞的划痕实验中,虽然Dicer抑制显著阻止了伤口愈合,但这是由Suz12 siRNA拯救的,而不是Ezh2抑制,这表明Suz12介导了Dicer siRNA在这些细胞中的作用。此外,与scramble转染的细胞相比,Dicer siRNA降低了整合素alphaV (Itgav)的水平,整合素alphaV广泛参与伤口愈合过程,而这种作用在Suz12 siRNA的存在下得以恢复。Itgav在整个基因长度和Dicer抑制中含有潜在的组蛋白甲基化标记,通过增加prc2介导的Itgav上的H3K27甲基化,可能降低其转录,从而损害伤口愈合。这些数据提出了糖尿病患者延迟伤口愈合的新方面,可能是治疗干预的潜在目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dicer inhibition delays wound closure by increasing SUZ12 levels and regulating ITGAV levels in keratinocytes.

Delayed wound closure is a significant hallmark associated with diabetes. A previous study from our laboratory identified decreased levels of Dicer and miRNAs together with altered levels of wound healing genes in the wounded tissues of diabetic rats. Comprehensive regulators of these wound healing genes mapped onto the PRC2 (polycomb repressive complex 2) complex. Here we show that Dicer inhibition increases the transcript levels of core components of the PRC2 complex, namely Suz12 (suppressor of zeste 12) and Ezh2 (enhancer of zeste 2) and of Mtf2 (metal response element-binding transcription factor 2), its additional subunit, and elevates H3K27me3 levels in HaCaT cells. Such patterns of increase were also observed in the wounded tissues of diabetic rats as compared to those of normal rats. In a scratch assay in HaCaT cells, while Dicer inhibition significantly prevented wound closure, this was rescued by Suz12 siRNA but not by Ezh2 inhibition, suggesting that Suz12 mediates the effects of Dicer siRNA in these cells. In addition, as compared to scramble transfected cells, Dicer siRNA decreased the levels of integrin alphaV (Itgav), that is extensively implicated in the process of wound healing and this effect was rescued in the presence of Suz12 siRNA. Itgav harbors potential histone methylation marks across the gene length and Dicer inhibition, by increasing PRC2-mediated H3K27 methylation on Itgav, possibly decreases its transcription that subsequently impairs wound closure. These data put forth novel aspects of delayed wound closure as seen during diabetes and might be a potential target for therapeutic intervention.

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来源期刊
Journal of molecular endocrinology
Journal of molecular endocrinology 医学-内分泌学与代谢
CiteScore
6.90
自引率
0.00%
发文量
96
审稿时长
1 months
期刊介绍: The Journal of Molecular Endocrinology is an official journal of the Society for Endocrinology and is endorsed by the European Society of Endocrinology and the Endocrine Society of Australia. Journal of Molecular Endocrinology is a leading global journal that publishes original research articles and reviews. The journal focuses on molecular and cellular mechanisms in endocrinology, including: gene regulation, cell biology, signalling, mutations, transgenics, hormone-dependant cancers, nuclear receptors, and omics. Basic and pathophysiological studies at the molecule and cell level are considered, as well as human sample studies where this is the experimental model of choice. Technique studies including CRISPR or gene editing are also encouraged.
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