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Essential role of Ahnak in adipocyte differentiation leading to the transcriptional regulation of Bmpr1α expression

机译:Ahnak在脂肪细胞分化中的基本作用导致BMPR1α表达的转录调控

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The role of Ahnak in obesity has been reported previously. Loss of Ahnak leads to decreased Bmp4/Smad1 signaling, resulting in the downregulation of adipocyte differentiation. However, the biological significance of Ahnak remains largely unknown. In this study, we demonstrate that Ahnak-mediated impaired adipogenesis results in decreased Bmpr1α transcriptional expression. To confirm this, Ahnak siRNA was used to knock-down Ahnak in C3H10T1/2 and primary stromal vascular fraction cells. Ahnak siRNA transfected cells showed suppression of Bmpr1α expression and decreased BMP4/ Bmpr1α signaling. The differential adipogenesis was further confirmed by knock-down of Bmpr1α in C3H10T1/2 cells, which resulted in reduced adipogenesis. Moreover, stable Ahnak knock-out C3H10T1/2 cells stably transfected with Ahnak CRISPR/Cas9 plasmid suppressed expression of Bmpr1α and prevented differentiation into adipocytes. Furthermore, we developed immortalized pre-adipocytes from wild-type or Ahnak Knock-out mice’s stromal vascular fraction (SVF) to confirm the function of Ahnak in pre-adipocyte transition. Immortalized Ahnak knock-out SVF cells showed lower level of Bmpr1α expression, evidence by their impaired BMP4/Bmpr1α signaling. Upon adipogenic induction, immortalized Ahnak knock-out SVF cells exhibited a marked decrease in adipocyte differentiation compared with immortalized wild-type pre-adipocytes. Furthermore, over-expression of Bmpr1α restored the adipogenic activity of Ahnak knock-out C3H10T1/2 cells and immortalized Ahnak knock-out SVF cells. Our data reveal the missing link in Ahnak-mediated adipose tissue remodeling and suggest that precise regulation of Ahnak in adipose tissue might have a therapeutic advantage for metabolic disease treatment.
机译:Ahnak在肥胖症中的作用已经报告。 Ahnak的损失导致BMP4 / Smad1信号传导下降,导致脂肪细胞分化的下调。然而,Ahnak的生物学意义仍然很大程度上是未知的。在这项研究中,我们证明Ahnak介导的受损脂肪生成导致BMPR1α转录表达的降低。为了确认这一点,Ahnak siRNA用于在C3H10T1 / 2和初级基质血管级分细胞中击倒Ahnak。 Ahnak siRNA转染细胞显示BMPR1α表达的抑制和降低BMP4 /BMPR1α信号。通过C3H10T1 / 2细胞中BMPR1α的敲低进一步证实了差异脂肪发生,这导致脂肪发生降低。此外,稳定的Ahnak敲除C3H10T1 / 2细胞稳定地用Ahnak CRISPR / CAS9质粒抑制BMPR1α的表达并防止分化为脂肪细胞。此外,我们从野生型或AhNak敲除小鼠的基质血管分数(SVF)中形成了永生化的前脂肪细胞,以确认Ahnak在预脂肪细胞过渡中的功能。永生化的AhNak敲除SVF细胞显示出较低水平的BMPR1α表达,通过其BMP4 /BMPR1α信号损失的证据。在脂肪发生诱导后,与永生化的野生型预脂肪细胞相比,永生化的Ahnak敲除SVF细胞显示出脂肪细胞分化的显着降低。此外,BMPR1α的过表达恢复了Ahnak敲除C3H10T1 / 2细胞的脂肪生成活性,并使Ahnak敲除SVF细胞永生化。我们的数据揭示了Ahnak介导的脂肪组织重塑中缺失的链接,并表明在脂肪组织中Ahnak的精确调节可能具有代谢疾病治疗的治疗优势。

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