Musculoskeletal Research Center, Division of Bone and Mineral Diseases, Washington University School of Medicine, St. Louis, MO, 63110, USA.
Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, MO, 63110, USA.
Sci Rep. 2022 Mar 22;12(1):4915. doi: 10.1038/s41598-022-08914-6.
NF-κB has been reported to both promote and inhibit bone formation. To explore its role in osteolineage cells, we conditionally deleted IKKα, an upstream kinase required for non-canonical NF-κB activation, using Osterix (Osx)-Cre. Surprisingly, we found no effect on either cancellous or cortical bone, even following mechanical loading. However, we noted that IKKα conditional knockout (cKO) mice began to lose body weight after 6 months of age with severe reductions in fat mass and lower adipocyte size in geriatric animals. qPCR analysis of adipogenic markers in fat pads of cKO mice indicated no difference in early differentiation, but instead markedly lower leptin with age. We challenged young mice with a high fat diet finding that cKO mice gained less weight and showed improved glucose metabolism. Low levels of recombination at the IKKα locus were detected in fat pads isolated from old cKO mice. To determine whether recombination occurs in adipocytes, we examined fat pads in Osx-Cre;TdT reporter mice; these showed increasing Osx-Cre-mediated expression in peripheral adipocytes from 6 weeks to 18 months. Since Osx-Cre drives recombination in peripheral adipocytes with age, we conclude that fat loss in cKO mice is most likely caused by progressive deficits of IKKα in adipocytes.
NF-κB 被报道既能促进也能抑制骨形成。为了探索其在成骨细胞中的作用,我们使用 Osterix (Osx)-Cre 条件性删除了非经典 NF-κB 激活所需的上游激酶 IKKα。令人惊讶的是,即使在机械加载后,我们也没有发现它对松质骨或皮质骨有任何影响。然而,我们注意到 IKKα 条件性敲除 (cKO) 小鼠在 6 个月大后开始体重减轻,老年动物的脂肪量严重减少,脂肪细胞体积减小。对 cKO 小鼠脂肪垫中脂肪生成标记物的 qPCR 分析表明,早期分化没有差异,但随着年龄的增长,瘦素明显降低。我们用高脂肪饮食挑战年轻小鼠,发现 cKO 小鼠体重增加较少,葡萄糖代谢得到改善。在从老年 cKO 小鼠分离的脂肪垫中检测到 IKKα 基因座的重组水平较低。为了确定重组是否发生在脂肪细胞中,我们检查了 Osx-Cre;TdT 报告小鼠的脂肪垫;这些报告显示,外周脂肪细胞中的 Osx-Cre 介导的表达从 6 周增加到 18 个月。由于 Osx-Cre 随着年龄的增长在周围脂肪细胞中驱动重组,我们得出结论,cKO 小鼠的脂肪丢失很可能是由于脂肪细胞中 IKKα 的逐渐缺乏所致。