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Nupr1基因缺失可下调HtrA1,增强SMAD1信号传导,并抑制雄性小鼠与年龄相关的骨质流失。

Nupr1 deficiency downregulates HtrA1, enhances SMAD1 signaling, and suppresses age-related bone loss in male mice.

作者信息

Murayama Masatoshi, Hirata Hirohito, Shiraki Makoto, Iovanna Juan L, Yamaza Takayoshi, Kukita Toshio, Komori Toshihisa, Moriishi Takeshi, Ueno Masaya, Morimoto Tadatsugu, Mawatari Masaaki, Kukita Akiko

机构信息

Department of Orthopaedic Surgery, Faculty of Medicine, Saga University, Saga, Japan.

Centre de Recherche en Cancérologie de Marseille, INSERM U 1068, CNRS UMR 7258, Aix-Marseille Université and Institut Paoli-Calmettes, Parc Scientifique et Technologique de Luminy, Marseille, France.

出版信息

J Cell Physiol. 2023 Mar;238(3):566-581. doi: 10.1002/jcp.30949. Epub 2023 Jan 30.

Abstract

Nuclear protein 1 (NUPR1) is a stress-induced protein activated by various stresses, such as inflammation and oxidative stress. We previously reported that Nupr1 deficiency increased bone volume by enhancing bone formation in 11-week-old mice. Analysis of differentially expressed genes between wild-type (WT) and Nupr1-knockout (Nupr1-KO) osteocytes revealed that high temperature requirement A 1 (HTRA1), a serine protease implicated in osteogenesis and transforming growth factor-β signaling was markedly downregulated in Nupr1-KO osteocytes. Nupr1 deficiency also markedly reduced HtrA1 expression, but enhanced SMAD1 signaling in in vitro-cultured primary osteoblasts. In contrast, Nupr1 overexpression enhanced HtrA1 expression in osteoblasts, suggesting that Nupr1 regulates HtrA1 expression, thereby suppressing osteoblastogenesis. Since HtrA1 is also involved in cellular senescence and age-related diseases, we analyzed aging-related bone loss in Nupr1-KO mice. Significant spine trabecular bone loss was noted in WT male and female mice during 6-19 months of age, whereas aging-related trabecular bone loss was attenuated, especially in Nupr1-KO male mice. Moreover, cellular senescence-related markers were upregulated in the osteocytes of 6-19-month-old WT male mice but markedly downregulated in the osteocytes of 19-month-old Nupr1-KO male mice. Oxidative stress-induced cellular senescence stimulated Nupr1 and HtrA1 expression in in vitro-cultured primary osteoblasts, and Nupr1 overexpression enhanced p16 expression in osteoblasts. Finally, NUPR1 expression in osteocytes isolated from the bones of patients with osteoarthritis was correlated with age. Collectively, these results indicate that Nupr1 regulates HtrA1-mediated osteoblast differentiation and senescence. Our findings unveil a novel Nupr1/HtrA1 axis, which may play pivotal roles in bone formation and age-related bone loss.

摘要

核蛋白1(NUPR1)是一种由多种应激(如炎症和氧化应激)激活的应激诱导蛋白。我们之前报道,在11周龄小鼠中,Nupr1基因缺失通过增强骨形成增加了骨量。对野生型(WT)和Nupr1基因敲除(Nupr1-KO)骨细胞之间差异表达基因的分析显示,高温需求A1(HTRA1),一种参与骨生成和转化生长因子-β信号传导的丝氨酸蛋白酶,在Nupr1-KO骨细胞中显著下调。Nupr1基因缺失也显著降低了HtrA1的表达,但增强了体外培养的原代成骨细胞中的SMAD1信号传导。相反,Nupr1过表达增强了成骨细胞中HtrA1的表达,表明Nupr1调节HtrA1的表达,从而抑制成骨细胞生成。由于HtrA1也参与细胞衰老和年龄相关疾病,我们分析了Nupr1-KO小鼠中与衰老相关的骨质流失。在6至19月龄期间,WT雄性和雌性小鼠出现明显的脊柱小梁骨丢失,而与衰老相关的小梁骨丢失则有所减轻,尤其是在Nupr1-KO雄性小鼠中。此外,6至19月龄WT雄性小鼠的骨细胞中细胞衰老相关标志物上调,但在19月龄Nupr1-KO雄性小鼠的骨细胞中显著下调。氧化应激诱导的细胞衰老刺激了体外培养的原代成骨细胞中Nupr1和HtrA1的表达,并且Nupr1过表达增强了成骨细胞中p16的表达。最后,从骨关节炎患者骨骼中分离出的骨细胞中NUPR1的表达与年龄相关。总体而言,这些结果表明Nupr1调节HtrA1介导的成骨细胞分化和衰老。我们的研究结果揭示了一个新的Nupr1/HtrA1轴,其可能在骨形成和与年龄相关的骨质流失中起关键作用。

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