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核因子E2相关因子2(Nrf2)根据性别和年龄的不同,对骨骼中的质量积累和抗氧化内源性反应进行不同的调节。

Nrf2 regulates mass accrual and the antioxidant endogenous response in bone differently depending on the sex and age.

作者信息

Pellegrini Gretel Gisela, Cregor Meloney, McAndrews Kevin, Morales Cynthya Carolina, McCabe Linda Doyle, McCabe George P, Peacock Munro, Burr David, Weaver Connie, Bellido Teresita

机构信息

Department of Anatomy and Cell Biology, School of Medicine, Indiana University Purdue University Indianapolis, Indianapolis, Indiana, United States of America.

Department of Statistics, Purdue University, West Lafayette, Indiana, United States of America.

出版信息

PLoS One. 2017 Feb 2;12(2):e0171161. doi: 10.1371/journal.pone.0171161. eCollection 2017.

Abstract

Accumulation of reactive oxygen species (ROS) is an important pathogenic mechanism underling the loss of bone mass and strength with aging and other conditions leading to osteoporosis. The transcription factor erythroid 2-related factor2 (Nrf2) plays a central role in activating the cellular response to ROS. Here, we examined the endogenous response of bone regulated by Nrf2, and its relationship with bone mass and architecture in the male and female murine skeleton. Young (3 month-old) and old (15 month-old) Nrf2 knockout (KO) mice of either sex exhibited the expected reduction in Nrf2 mRNA expression compared to wild type (WT) littermates. Nrf2 deletion did not lead to compensatory increase in Nrf1 or Nrf3, other members of this transcription factor family; and instead, Nrf1 expression was lower in KO mice. Compared to the respective WT littermate controls, female KO mice, young and old, exhibited lower expression of both detoxifying and antioxidant enzymes; young male KO mice, displayed lower expression of detoxifying enzymes but not antioxidant enzymes; and old male KO mice showed no differences in either detoxifying or antioxidant enzymes. Moreover, old male WT mice exhibited lower Nrf2 levels, and consequently lower expression of both detoxifying and antioxidant enzymes, compared to old female WT mice. These endogenous antioxidant responses lead to delayed rate of bone acquisition in female KO mice and higher bone acquisition in male KO mice as quantified by DXA and μCT, demonstrating that Nrf2 is required for full bone accrual in the female skeleton but unnecessary and even detrimental in the male skeleton. Therefore, Nrf2 regulates the antioxidant endogenous response and bone accrual differently depending on sex and age. These findings suggest that therapeutic interventions that target Nrf2 could be developed to enhance the endogenous antioxidant response in a sex- and age-selective manner.

摘要

活性氧(ROS)的积累是导致骨质流失以及随着衰老和其他导致骨质疏松症的情况而出现骨强度下降的重要致病机制。转录因子红细胞2相关因子2(Nrf2)在激活细胞对ROS的反应中起核心作用。在此,我们研究了由Nrf2调节的骨骼内源性反应,及其与雄性和雌性小鼠骨骼中骨量和骨结构的关系。与野生型(WT)同窝小鼠相比,年轻(3个月大)和年老(15个月大)的Nrf2基因敲除(KO)雌雄小鼠的Nrf2 mRNA表达均出现预期的降低。Nrf2缺失并未导致该转录因子家族的其他成员Nrf1或Nrf3的代偿性增加;相反,KO小鼠中Nrf1的表达更低。与各自的WT同窝对照相比,年轻和年老的雌性KO小鼠的解毒酶和抗氧化酶表达均较低;年轻雄性KO小鼠的解毒酶表达较低,但抗氧化酶表达无差异;而年老雄性KO小鼠的解毒酶或抗氧化酶均无差异。此外,与年老雌性WT小鼠相比,年老雄性WT小鼠的Nrf2水平较低,因此解毒酶和抗氧化酶的表达也较低。这些内源性抗氧化反应导致雌性KO小鼠的骨获取速率延迟,而雄性KO小鼠的骨获取速率更高,这通过双能X线吸收法(DXA)和显微计算机断层扫描(μCT)定量得出,表明Nrf2是雌性骨骼完全骨积累所必需的,但在雄性骨骼中并非必需,甚至有害。因此,Nrf2根据性别和年龄不同地调节抗氧化内源性反应和骨积累。这些发现表明,可以开发针对Nrf2的治疗干预措施,以性别和年龄选择性的方式增强内源性抗氧化反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e935/5289572/93473b0e9e9c/pone.0171161.g001.jpg

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