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腭裂候选基因 BAG6 通过支持 FoxO1 乙酰化促进腭裂融合过程中 FasL 介导的细胞凋亡。

The cleft palate candidate gene BAG6 supports FoxO1 acetylation to promote FasL-mediated apoptosis during palate fusion.

机构信息

Department of Plastic and Reconstructive Surgery, First Affiliated Hospital of Bengbu Medical College, Bengbu, China.

Anhui Clinical and Preclinical Key Laboratory of Respiratory Disease, Bengbu, China; The Molecular diagnostic center, The Department of Respiratory and Critical Care Medicine, First Affiliated Hospital of Bengbu Medical College, Bengbu, China.

出版信息

Exp Cell Res. 2020 Nov 15;396(2):112310. doi: 10.1016/j.yexcr.2020.112310. Epub 2020 Sep 28.

Abstract

BACKGROUND

Cleft palate is a common craniofacial defect, which occurs when the palate fails to fuse during development. During fusion, the palatal shelves migrate towards the embryonic midline to form a seam. Apoptotic elimination of medial edge epithelium (MEE) cells along this seam is required for the completion of palate fusion.

METHODS

Whole exome sequencing (WES) of six Chinese cleft palate families was applied to identify novel cleft palate-associated gene variants. Palatal fusion and immunofluorescence studies were performed in a murine palatal shelf organ culture model. Gene and protein expression were analyzed by qPCR and immunoblotting in murine MEE cells during seam formation in vivo. Mechanistic immunoprecipitation studies were performed in murine MEE cells in vitro.

RESULTS

WES identified Bcl-2 associated anthanogene 6 (BAG6) as a novel cleft palate-associated gene. In murine MEE cells, we discovered upregulation of Bag6 and the transcription factor forkhead box protein O1 (FoxO1) during seam formation in vivo. Using a palatal shelf organ culture model, we demonstrate that nuclear-localized Bag6 enhances MEE cell apoptosis by promoting p300's acetylation of FoxO1, thereby promoting transcription of the pro-apoptotic Fas ligand (FasL). Subsequent gain- and loss-of-function studies in the organ culture model demonstrated that FasL is required for Bag6/acFoxO1-mediated activation of pro-apoptotic Bax/caspase-3 signaling, MEE apoptosis, and palate fusion. Palatal shelf contact was shown to enhance Bag6 nuclear localization and upregulate nuclear acFoxO1 in MEE cells.

CONCLUSIONS

These findings demonstrate that nuclear-localized Bag6 and p300 co-operatively enhance FoxO1 acetylation to promote FasL-mediated MEE apoptosis during palate fusion.

摘要

背景

腭裂是一种常见的颅面缺陷,发生在腭部发育过程中未能融合时。在融合过程中,腭突向胚胎中线迁移以形成一条缝。沿这条缝,内侧缘上皮(MEE)细胞的凋亡消除是腭裂融合完成所必需的。

方法

对六个中国腭裂家庭进行全外显子组测序(WES),以鉴定新的腭裂相关基因变异。在鼠腭突器官培养模型中进行腭融合和免疫荧光研究。在体内缝形成过程中,通过 qPCR 和免疫印迹分析小鼠 MEE 细胞中的基因和蛋白表达。在体外进行鼠 MEE 细胞的机制免疫沉淀研究。

结果

WES 将 Bcl-2 相关抗凋亡基因 6(BAG6)鉴定为新的腭裂相关基因。在鼠 MEE 细胞中,我们发现 Bag6 和转录因子叉头框蛋白 O1(FoxO1)在体内缝形成过程中上调。使用腭突器官培养模型,我们证明核定位的 Bag6 通过促进 p300 对 FoxO1 的乙酰化来增强 MEE 细胞凋亡,从而促进促凋亡 Fas 配体(FasL)的转录。在器官培养模型中的增益和失能研究表明,FasL 是 Bag6/acFoxO1 介导的促凋亡 Bax/caspase-3 信号转导、MEE 细胞凋亡和腭裂融合所必需的。腭突接触被证明可以增强 MEE 细胞中 Bag6 的核定位和核内 acFoxO1 的上调。

结论

这些发现表明,核定位的 Bag6 和 p300 协同增强 FoxO1 的乙酰化,以促进腭裂融合过程中 FasL 介导的 MEE 细胞凋亡。

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