Department of Research, Saint Francis Hospital and Medical Center, Hartford, Connecticut 06105-1299, USA.
J Cell Biochem. 2012 Feb;113(2):449-56. doi: 10.1002/jcb.23365.
The bone morphogenetic protein/Signaling mothers against decapentaplegic (BMP/Smad) and the WNT signaling pathways regulate the commitment of mesenchymal cells to the osteoblastic lineage. Nemo-like kinase (Nlk) is an evolutionary conserved kinase that suppresses Smad transactivation and WNT canonical signaling. However, it is not clear whether these effects of Nlk have any consequence on the differentiation of mammalian cells. To study the function of Nlk during the commitment of ST-2 bone marrow stromal cells to the osteoblastic fate, Nlk was downregulated by RNA interference (RNAi), following transfection of a specific small interfering (si)RNA. Nlk downregulation increased alkaline phosphatase and osteocalcin expression and sensitized ST-2 cells to the effects of BMP2 and WNT3 on alkaline phosphatase mRNA expression and activity. Accordingly, Nlk downregulation enhanced the effect of BMP2 on the transactivation of the BMP/Smad reporter construct 12xSBE-Oc-pGL3, and on the levels of phosphorylated Smad1/5/8, whereas it did not affect the transactivation of the transforming growth factor-β/Smad reporter pSBE-Luc. Nlk downregulation sensitized ST-2 cells to the effects of WNT3 on the transactivation of the WNT/T-cell factor (Tcf) reporter construct 16xTCF-Luc, whereas it did not affect cytosolic β-catenin levels. To understand the function of Nlk in cells committed to the osteoblastic lineage, Nlk was suppressed by RNAi in primary calvarial osteoblasts. Downregulation of Nlk increased alkaline phosphatase and osteocalcin transcripts and sensitized osteoblasts to the effects of BMP2 on alkaline phosphatase activity and Smad1/5/8 transactivation and phosphorylation. In conclusion, Nlk suppresses osteoblastogenesis by opposing BMP/Smad and WNT canonical signaling.
骨形态发生蛋白/Smad 信号通路和 WNT 信号通路调节间充质细胞向成骨细胞谱系的定向分化。Nemo 样激酶(Nlk)是一种进化上保守的激酶,可抑制 Smad 转录激活和 WNT 经典信号通路。然而,目前尚不清楚 Nlk 的这些作用是否会对哺乳动物细胞的分化产生任何影响。为了研究 Nlk 在 ST-2 骨髓基质细胞向成骨细胞命运定向分化过程中的功能,通过转染特异性小干扰(si)RNA 下调 Nlk。Nlk 下调增加碱性磷酸酶和骨钙素的表达,并使 ST-2 细胞对 BMP2 和 WNT3 对碱性磷酸酶 mRNA 表达和活性的作用更加敏感。因此,Nlk 下调增强了 BMP2 对 BMP/Smad 报告基因构建体 12xSBE-Oc-pGL3 的转录激活作用,以及对磷酸化 Smad1/5/8 的水平的影响,而对转化生长因子-β/Smad 报告基因 pSBE-Luc 的转录激活作用没有影响。Nlk 下调使 ST-2 细胞对 WNT3 对 WNT/T 细胞因子(Tcf)报告基因构建体 16xTCF-Luc 的转录激活作用更加敏感,而对细胞质 β-连环蛋白水平没有影响。为了了解 Nlk 在向成骨细胞谱系定向分化的细胞中的功能,在原代颅骨成骨细胞中通过 RNAi 抑制 Nlk。Nlk 的下调增加碱性磷酸酶和骨钙素的转录本,并使成骨细胞对 BMP2 对碱性磷酸酶活性和 Smad1/5/8 转录激活和磷酸化的作用更加敏感。总之,Nlk 通过拮抗 BMP/Smad 和 WNT 经典信号通路来抑制成骨细胞的形成。