Robert M. Berne Cardiovascular Research Center, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.
Department of Cell Biology, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.
Sci Signal. 2024 Jan 30;17(821):eadg2622. doi: 10.1126/scisignal.adg2622.
Targeted degradation regulates the activity of the transcriptional repressor Bcl6 and its ability to suppress oxidative stress and inflammation. Here, we report that abundance of endothelial Bcl6 is determined by its interaction with Golgi-localized pannexin 3 (Panx3) and that Bcl6 transcriptional activity protects against vascular oxidative stress. Consistent with data from obese, hypertensive humans, mice with an endothelial cell-specific deficiency in had spontaneous systemic hypertension without obvious changes in channel function, as assessed by Ca handling, ATP amounts, or Golgi luminal pH. Panx3 bound to Bcl6, and its absence reduced Bcl6 protein abundance, suggesting that the interaction with Panx3 stabilized Bcl6 by preventing its degradation. deficiency was associated with increased expression of the gene encoding the HO-producing enzyme Nox4, which is normally repressed by Bcl6, resulting in HO-induced oxidative damage in the vasculature. Catalase rescued impaired vasodilation in mice lacking endothelial Panx3. Administration of a newly developed peptide to inhibit the Panx3-Bcl6 interaction recapitulated the increase in expression and in blood pressure seen in mice with endothelial deficiency. Panx3-Bcl6-Nox4 dysregulation occurred in obesity-related hypertension, but not when hypertension was induced in the absence of obesity. Our findings provide insight into a channel-independent role of Panx3 wherein its interaction with Bcl6 determines vascular oxidative state, particularly under the adverse conditions of obesity.
靶向降解调节转录抑制剂 Bcl6 的活性及其抑制氧化应激和炎症的能力。在这里,我们报告内皮细胞 Bcl6 的丰度由其与高尔基定位的 Pannexin 3(Panx3)的相互作用决定,并且 Bcl6 的转录活性可防止血管氧化应激。与肥胖、高血压人类的数据一致,内皮细胞特异性缺乏 的小鼠自发性发生全身性高血压,而通道功能没有明显变化,通过 Ca 处理、ATP 量或高尔基内腔 pH 值评估。Panx3 与 Bcl6 结合,而其缺失减少了 Bcl6 蛋白的丰度,表明与 Panx3 的相互作用通过防止其降解来稳定 Bcl6。缺乏与编码 HO 产生酶 Nox4 的基因表达增加有关,Nox4 通常受 Bcl6 抑制,导致血管中 HO 诱导的氧化损伤。过氧化氢酶挽救了缺乏内皮 Panx3 的小鼠中受损的血管舒张。抑制 Panx3-Bcl6 相互作用的新开发肽的给药再现了在缺乏内皮细胞 的小鼠中观察到的 表达增加和血压升高。Panx3-Bcl6-Nox4 失调发生在肥胖相关的高血压中,但在没有肥胖诱导的高血压中不会发生。我们的发现为 Panx3 的一种非通道依赖性作用提供了深入了解,其中其与 Bcl6 的相互作用决定了血管的氧化状态,尤其是在肥胖等不利条件下。