Song William W C, McLennan Susan V, Tam Charmaine, Williams Paul F, Baxter Robert C, Twigg Stephen M
Sydney Medical School and Charles Perkins Centre, University of Sydney, Sydney, Australia.
J Cell Commun Signal. 2015 Mar;9(1):27-36. doi: 10.1007/s12079-014-0252-8. Epub 2014 Oct 30.
Fat cell differentiation (FCD) potentiates adipose cell characteristics including lipid storage and insulin sensitivity. In vitro, we have demonstrated that CCN2, also known as connective tissue growth factor (CTGF), inhibits FCD in NIH3T3-L1 cells and in adipocytes isolated from mouse epididymal fat pads. The aim of this study was to determine if the CCN2 effect on FCD is dependent on TGF-β and TGF-β downstream pathway signalling.
NIH3T3-L1 cells were differentiated using standard methods with IBMX/Dex/Insulin. FCD at day 10 was confirmed by induced gene markers resistin and adiponectin and by lipid accumulation. Cells were treated at d0 with single dose active rhTGF-β1 (2 ng/mL), rhCCN2 (500 ng/mL) and/or TGF-β type 1 receptor blocker (SB431542, 5 μM). Early induction of FCD transcription factors: CCAAT/enhancer binding proteins (C/EBPs) and peroxisome proliferator-activated receptor-γ (PPAR-γ), were also determined.
In an early time course from 2 h, single doses of rhTGF-β1 or rhCCN2 significantly inhibited by ~70 % the induction of C/EBP-β and -δ mRNA, and also nuclear protein levels otherwise seen during FCD, whereas only delayed effects on PPAR-γ, at 48 h, occurred. Furthermore, the CCN2 inhibition of FCD markers adiponectin and resistin and lipid accumulation by Oil red O stain were each prevented by TGF-β receptor blockade. Similar prevention was found using pan-specific anti-TGF-β neutralising antibody. CCN2 and TGF-β treatment each rapidly phosphorylated SMAD-3 signalling in early stages of FCD.
This work shows novel findings that CCN2 effects on FCD are both TGF-β and TGF-β pathway dependent and are related to early effects on C/EBPs.
脂肪细胞分化(FCD)增强了包括脂质储存和胰岛素敏感性在内的脂肪细胞特性。在体外,我们已经证明,CCN2,也称为结缔组织生长因子(CTGF),可抑制NIH3T3-L1细胞和从小鼠附睾脂肪垫分离的脂肪细胞中的FCD。本研究的目的是确定CCN2对FCD的影响是否依赖于TGF-β和TGF-β下游信号通路。
使用IBMX/地塞米松/胰岛素的标准方法诱导NIH3T3-L1细胞分化。通过诱导基因标志物抵抗素和脂联素以及脂质积累来确认第10天的FCD。在第0天用单剂量活性重组人转化生长因子-β1(rhTGF-β1,2 ng/mL)、重组人CCN2(rhCCN2,500 ng/mL)和/或1型TGF-β受体阻滞剂(SB431542,5 μM)处理细胞。还测定了FCD转录因子:CCAAT/增强子结合蛋白(C/EBP)和过氧化物酶体增殖物激活受体-γ(PPAR-γ)的早期诱导情况。
在2小时开始的早期时间进程中,单剂量的rhTGF-β1或rhCCN2显著抑制了C/EBP-β和-δ mRNA的诱导,以及在FCD期间原本可见的核蛋白水平,而对PPAR-γ的影响仅在48小时出现延迟效应。此外,TGF-β受体阻断可阻止CCN2对FCD标志物脂联素和抵抗素的抑制以及油红O染色的脂质积累。使用泛特异性抗TGF-β中和抗体也发现了类似的预防效果。CCN2和TGF-β处理在FCD早期均迅速使SMAD-3信号通路磷酸化。
这项工作显示了新的发现,即CCN2对FCD的影响既依赖于TGF-β又依赖于TGF-β信号通路,并且与对C/EBP的早期影响有关。