首页> 美国卫生研究院文献>Tissue Engineering. Part A >Epigenetically Modified Bone Marrow Stromal Cells in Silk Scaffolds Promote Craniofacial Bone Repair and Wound Healing
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Epigenetically Modified Bone Marrow Stromal Cells in Silk Scaffolds Promote Craniofacial Bone Repair and Wound Healing

机译:表观遗传修饰的丝绸支架中的骨髓基质细胞促进颅面骨修复和伤口愈合。

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摘要

Epigenetic regulation of gene expression is a central mechanism that governs cell stemness, determination, commitment, and differentiation. It has been recently found that PHF8, a major H4K20/H3K9 demethylase, plays a critical role in craniofacial and bone development. In this study, we hypothesize that PHF8 promotes osteoblastogenesis by epigenetically regulating the expression of a nuclear matrix protein, special AT-rich sequence-binding protein 2 (SATB2) that plays pivotal roles in skeletal patterning and osteoblast differentiation. Our results showed that expression levels of PHF8 and SATB2 in preosteoblasts and bone marrow stromal cells (BMSCs) increased simultaneously during osteogenic induction. Overexpressing PHF8 in these cells upregulated the expression of SATB2, Runx2, osterix, and bone matrix proteins. Conversely, knockdown of PHF8 reduced the expression of these genes. Furthermore, ChIP assays confirmed that PHF8 specifically bound to the transcription start site (TSS) of the SATB2 promoter, and the expression of H3K9me1 at the TSS region of SATB2 decreased in PHF8 overexpressed group. Implantation of the BMSCs overexpressing PHF8 with silk protein scaffolds promoted bone regeneration in critical-sized defects in mouse calvaria. Taken together, our results demonstrated that PHF8 epigenetically modulates SATB2 activity, triggering BMSCs osteogenic differentiation and facilitating bone formation and regeneration in biodegradable silk scaffolds.
机译:基因表达的表观遗传调控是控制细胞干性,决定性,定性和分化的主要机制。最近发现,主要的H4K20 / H3K9去甲基酶PHF8在颅面和骨骼发育中起着关键作用。在这项研究中,我们假设PHF8通过表观遗传调控核基质蛋白(特殊的富含AT的序列结合蛋白2(SATB2))的表达来促进成骨细胞生成,该蛋白在骨骼形成和成骨细胞分化中起关键作用。我们的结果表明,成骨诱导过程中,成骨细胞和骨髓基质细胞(BMSC)中PHF8和SATB2的表达水平同时增加。这些细胞中过表达的PHF8上调了SATB2,Runx2,osterix和骨基质蛋白的表达。相反,敲低PHF8会降低这些基因的表达。此外,ChIP分析证实PHF8特异结合到SATB2启动子的转录起始位点(TSS),并且在SATB2的TSS区中H3K9me1的表达在PHF8过表达的组中降低了。用丝蛋白支架植入过表达PHF8的BMSC促进了小鼠颅骨关键尺寸缺损中的骨再生。两者合计,我们的结果表明PHF8表观遗传调控SATB2活性,触发BMSCs成骨分化并促进可生物降解的丝支架中骨的形成和再生。

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