Baker Emma K, Taylor Scott, Gupte Ankita, Chalk Alistair M, Bhattacharya Shreya, Green Alanna C, Martin T John, Strbenac Dario, Robinson Mark D, Purton Louise E, Walkley Carl R
Stem Cell Regulation Unit, St. Vincent's Institute of Medical Research, Fitzroy, Australia; Department of Medicine, St. Vincent's Hospital, University of Melbourne, Fitzroy, Australia.
Stem Cell Regulation Unit, St. Vincent's Institute of Medical Research, Fitzroy, Australia.
Bone. 2015 Apr;73:223-32. doi: 10.1016/j.bone.2014.12.063. Epub 2015 Jan 5.
Wnt pathway targeting is of high clinical interest for treating bone loss disorders such as osteoporosis. These therapies inhibit the action of negative regulators of osteoblastic Wnt signaling. The report that Wnt inhibitory factor 1 (WIF1) was epigenetically silenced via promoter DNA methylation in osteosarcoma (OS) raised potential concerns for such treatment approaches. Here we confirm that Wif1 expression is frequently reduced in OS. However, we demonstrate that silencing is not driven by DNA methylation. Treatment of mouse and human OS cells showed that Wif1 expression was robustly induced by HDAC inhibition but not by methylation inhibition. Consistent with HDAC dependent silencing, the Wif1 locus in OS was characterized by low acetylation levels and a bivalent H3K4/H3K27-trimethylation state. Wif1 expression marked late stages of normal osteoblast maturation and stratified OS tumors based on differentiation stage across species. Culture of OS cells under differentiation inductive conditions increased expression of Wif1. Together these results demonstrate that Wif1 is not targeted for silencing by DNA methylation in OS. Instead, the reduced expression of Wif1 in OS cells is in context with their stage in differentiation.
Wnt信号通路靶向治疗对于治疗骨质疏松等骨质流失疾病具有很高的临床价值。这些疗法可抑制成骨细胞Wnt信号负调节因子的作用。有报道称,骨肉瘤(OS)中Wnt抑制因子1(WIF1)通过启动子DNA甲基化发生表观遗传沉默,这引发了人们对这种治疗方法的潜在担忧。在此,我们证实Wif1在OS中表达常常降低。然而,我们证明这种沉默并非由DNA甲基化驱动。对小鼠和人类OS细胞的处理表明,Wif1表达可通过抑制组蛋白去乙酰化酶(HDAC)而强烈诱导,但不能通过抑制甲基化来诱导。与HDAC依赖性沉默一致,OS中的Wif1基因座具有低乙酰化水平和二价H3K4/H3K27三甲基化状态的特征。Wif1表达标志着正常成骨细胞成熟的后期阶段,并根据跨物种的分化阶段对OS肿瘤进行分层。在诱导分化条件下培养OS细胞可增加Wif1的表达。这些结果共同表明,在OS中Wif1并非被DNA甲基化靶向沉默。相反,OS细胞中Wif1表达的降低与其分化阶段相关。