Suppr超能文献

体外及雄性大鼠脑内糖皮质激素受体与小泛素样修饰蛋白对脉冲式糖皮质激素的反应波动

Glucocorticoid Receptor and SUMO Fluctuations in Response to Pulsatile Glucocorticoids In Vitro and in Male Rat Brains.

作者信息

Rivers Caroline A, Abdulqayoom Heyam A, Kershaw Yvonne M, Troy Oliver R, Zhao Zidong, Conway-Campbell Becky L, Lightman Stafford L

机构信息

Bristol Medical School, Translational Health Science, University of Bristol, Bristol BS1 3NY, UK.

出版信息

Endocrinology. 2025 Sep 8;166(10). doi: 10.1210/endocr/bqaf140.

Abstract

We present a molecular mechanism underpinning how pulsatile patterns of glucocorticoid hormones maintain signal responsivity, evade hormone resistance, and promote homeostasis. Endogenous glucocorticoids are released in a pulsatile manner resulting in oscillating hormone signals with intermittent peaks of high glucocorticoids and troughs of low glucocorticoids. We show that ligand activation of glucocorticoid receptors rapidly triggers the post-translational modification SUMOylation, which is coupled to receptor degradation, whereby resistance to subsequent signal transduction is generated and ligand response attenuated. We find rapid, transient glucocorticoid receptor SUMOylation tracks ultradian (roughly hourly) pulse dynamics in cells, as well as circadian (daily) oscillatory rhythms in vivo, enabling cellular interpretation of fluctuating hormone patterns. Prolonged treatment with the long-acting synthetic glucocorticoid methylprednisolone disrupted glucocorticoid receptor SUMOylation levels in rat brain tissue. Pharmacological glucocorticoid therapy generates unremitting glucocorticoid signaling, which may substantially reduce the glucocorticoid receptor pool and contribute to the therapeutic problem of acquired glucocorticoid resistance. The physiological solution for maintaining signal responsivity over time is pulsatile hormone exposure, with pulsatile low glucocorticoid troughs which periodically limit receptor degradation and associated signal attenuation. We show low glucocorticoid periods allow time for depleted glucocorticoid receptor expression levels to recover and thereby maintain signal sensitivity. Our results reveal a molecular mechanism responsive to hormone pattern information, through which endogenous ultradian and circadian glucocorticoid fluctuations maintain glucocorticoid receptor expression and glucocorticoid sensitivity. Dynamic ligand-activated glucocorticoid receptor SUMOylation coupled to degradation is revealed as a component of glucocorticoid receptor protein regulation, whose expression is critical for metabolic, immunological, cognitive, and cardiovascular homeostasis.

摘要

我们提出了一种分子机制,该机制解释了糖皮质激素的脉冲模式如何维持信号反应性、避免激素抵抗并促进体内平衡。内源性糖皮质激素以脉冲方式释放,导致激素信号振荡,出现高糖皮质激素的间歇性峰值和低糖皮质激素的谷值。我们发现,糖皮质激素受体的配体激活迅速触发翻译后修饰——小泛素样修饰(SUMOylation),这与受体降解相关联,从而产生对后续信号转导的抗性并减弱配体反应。我们发现,快速、短暂的糖皮质激素受体SUMOylation追踪细胞内的超日节律(约每小时一次)脉冲动态以及体内的昼夜节律振荡,使细胞能够解读波动的激素模式。长期使用长效合成糖皮质激素甲泼尼龙治疗会破坏大鼠脑组织中糖皮质激素受体的SUMOylation水平。药理学糖皮质激素治疗会产生持续的糖皮质激素信号,这可能会大幅减少糖皮质激素受体库,并导致获得性糖皮质激素抵抗这一治疗问题。随着时间推移维持信号反应性的生理解决方案是脉冲式激素暴露,其中脉冲式低糖皮质激素谷值会周期性地限制受体降解及相关信号衰减。我们发现低糖皮质激素时期为耗尽的糖皮质激素受体表达水平恢复提供了时间,从而维持信号敏感性。我们的结果揭示了一种对激素模式信息有反应的分子机制,内源性超日节律和昼夜节律糖皮质激素波动通过该机制维持糖皮质激素受体表达和糖皮质激素敏感性。与降解相关联的动态配体激活的糖皮质激素受体SUMOylation被揭示为糖皮质激素受体蛋白调节的一个组成部分,其表达对代谢、免疫、认知和心血管稳态至关重要。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验