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Exploring the role of Luman/CREB3 in regulating decidualization of mice endometrial stromal cells by comparative transcriptomics

机译:探讨Luman / Creb3对小鼠子宫内膜基质细胞的扩大化的作用

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BACKGROUND:Luman is a member of CREB3 (cAMP responsive element-binding) subfamily of the basic leucine-zipper (bZIP) transcription factors. It may play an important regulatory role during the decidualization process since Luman was highly expressed in the decidual cells. However, the exact molecular mechanisms of how Luman regulating decidualization is unknown.RESULTS:Using an in vitro model, we prove that Luman knockdown significantly affects the decidualization process of mice endometrial stromal cells (ESCs) as the expression of two decidual markers PRL8a2 and PRL3c1 were repressed. We employed massively parallel RNA sequencing (RNA-Seq) to understand the changes in the transcriptional landscape associated with knockdown of Luman in ESCs during in vitro decidualization. We found significant dysregulation of genes related to protein processing in the endoplasmic reticulum (ER). Several genes involved in decidualization including bone morphogenetic proteins (e.g. BMP1, BMP4, BMP8A, BMP2, and BMP8B), growth factor-related genes (e.g. VEGFB, FGF10, and FGFR2), and transcription factors (IF4E, IF4A2, WNT4, WNT9A, ETS1, NOTCH1, IRX1, IDB1, IDB2, and IDB3), show altered expression. We also found that the knockdown of Luman is associated with increased expression of cell cycle-related genes including cycA1, cycB1, cycB2, CDK1, CDK2, and PLPK1, which resulted in an increased proportion of ESCs in the G1 phase. Differentially expressed genes (DEGs) were highly enriched on ECM-receptor interaction signaling, endoplasmic reticulum protein processing, focal adhesion, and PI3K-Akt signaling pathways.CONCLUSIONS:Luman knockdown results in widespread gene dysregulation during decidualization of ESCs. Genes involved in protein processing in ER, bone morphogenetic protein, growth factor, and cell cycle progression were identified as particularly important for explaining the decidual deficiency observed in this in vitro model. Therefore, this study provides clues as to the underlying mechanisms that may expand our understanding of gene regulation during decidualization.
机译:背景:Luman是基础亮氨酸 - 拉链(BZIP)转录因子的CREB3(CAMP响应元素结合)亚家族的成员。在蜕皮细胞中高度表达以来,它可能在蜕皮过程中发挥重要的调节作用。然而,Luman调节DeCiAdualization的确切分子机制未知。结果:使用体外模型,我们证明了Luman敲低显着影响小鼠子宫内膜基质细胞(ESC)作为两种蜕膜标记PRL8A2和PRL3C1的表达被压抑了。我们使用大规模平行的RNA测序(RNA-SEQ)来了解在体外蜕皮化期间ESC在ESC的云南敲低相关的转录景观的变化。我们发现内质网(ER)中与蛋白质加工有关的基因的显着抑制。涉及携带骨种化的几种基因包括骨形态发生蛋白(例如BMP1,BMP4,BMP8A,BMP2和BMP8B),生长因子相关基因(例如VEGFB,FGF10和FGFR2)和转录因子(IF4E,IF4A2,WNT4,WNT9a,WNT9a, ETS1,NOTCH1,IRX1,IDB1,IDB2和IDB3)显示改变了表达式。我们还发现,Luman的敲低与细胞周期相关基因的表达增加有关,包括CyCA1,CyCB1,CyCB2,CDK1,CDK2和PLPK1,这导致G1相中的胚轴比例增加。差异表达的基因(DEGS)高度富集ECM-受体相互作用信号传导,内质网蛋白处理,局灶性粘附和PI3K-AKT信号传导途径。结论:Luman敲低导致ESC的蜕膜化期间广泛的基因失调。鉴定蛋白质处理中蛋白质处理的基因,鉴定骨髓生长因子和细胞周期进展,对于解释在体外模型中观察到的蜕皮缺乏症尤为重要。因此,本研究提供了对潜在机制的线索,这些机制可能会扩大我们在蜕皮化期间对基因调节的理解。

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