Medicherla R, Leers-Sucheta S, Luo Y, Azhar S
Geriatric Research, Education and Clinical Centre (GRECC), VA Palo Alto Health Care System (GRECC, 182B), 3801 Miranda Ave, Palo Alto, CA 94304, USA.
Mech Ageing Dev. 2001 Aug;122(11):1169-86. doi: 10.1016/s0047-6374(01)00258-5.
Oxidative stress appears to be one of the primary factors contributing to an age related decline in steroidogenic response in rat adrenocortical and testicular Leydig cells. In this report we concentrate on age-related changes in the DNA binding activity of the transcription factor AP-1 which is particularly responsive to changes in cellular oxidative conditions: adrenal nuclear extracts from young mature (5 months) and old (24 months) rats treated with, and without, lipopolysaccharide (LPS) were studied. AP-1 binding activity, as measured by electrophoretic mobility shift assays (EMSA), was diminished approximately 70% with age in unstimulated adrenals. Following LPS treatment, AP-1 binding activity increased significantly in the adrenals of both young and old animals; however, the level of AP-1 binding achieved in LPS-stimulated old rats was less than that observed for LPS-stimulated young rats. There was no corresponding change in the binding activity of housekeeping transcription factors SP-1 and OCT-1. To further understand these observations, compositional changes in the members of the AP-1 DNA-binding complex were examined by a super-shift assay and Western blot analysis. In adrenals from old rats, a significant decrease in the amount of Fra2 was noted under basal conditions, whereas, substantial decreases in c-Fos, Jun D and c-Jun were observed in response to LPS treatment. In contrast, basal levels of JunB, an inhibitor of the trans-activating function of c-Jun and repressor of AP-1-dependent transcription, were significantly elevated in adrenals from old rats compared to young rats. Together, these findings suggest that ageing-induced oxidative stress may contribute to impaired functional expression of AP-1 by differentially regulating the steady state levels of AP-1 components. The observed decrease in AP-1 binding activity in ageing adrenals is most likely due to decreased expression of the AP-1 activating components (c-Fos, c-Jun, JunD, etc.) and increased expression of JunB, resulting in a switch from transcriptionally active AP-1 complexes observed in young rats to less efficient JunB containing complexes in old rats.
氧化应激似乎是导致大鼠肾上腺皮质和睾丸间质细胞类固醇生成反应随年龄下降的主要因素之一。在本报告中,我们专注于转录因子AP-1的DNA结合活性的年龄相关变化,该转录因子对细胞氧化状态的变化特别敏感:研究了来自年轻成熟(5个月)和年老(24个月)大鼠的肾上腺核提取物,这些大鼠接受或未接受脂多糖(LPS)处理。通过电泳迁移率变动分析(EMSA)测定,在未刺激的肾上腺中,AP-1结合活性随年龄增长降低了约70%。LPS处理后,年轻和年老动物肾上腺中的AP-1结合活性均显著增加;然而,LPS刺激的老年大鼠中达到的AP-1结合水平低于LPS刺激的年轻大鼠。管家转录因子SP-1和OCT-1的结合活性没有相应变化。为了进一步理解这些观察结果,通过超迁移分析和蛋白质免疫印迹分析检测了AP-1 DNA结合复合物成员的组成变化。在老年大鼠的肾上腺中,基础条件下Fra2的量显著减少,而在LPS处理后,c-Fos、Jun D和c-Jun显著减少。相比之下,与年轻大鼠相比,老年大鼠肾上腺中JunB(c-Jun反式激活功能的抑制剂和AP-1依赖性转录的阻遏物)的基础水平显著升高。总之,这些发现表明,衰老诱导的氧化应激可能通过差异调节AP-1组分的稳态水平,导致AP-1功能表达受损。在衰老的肾上腺中观察到的AP-1结合活性降低最可能是由于AP-1激活组分(c-Fos、c-Jun、JunD等)表达减少和JunB表达增加,导致从年轻大鼠中观察到的转录活性AP-1复合物转变为老年大鼠中效率较低的含JunB复合物。