Sickle Trait and Alpha Thalassemia Increase NOS-Dependent Vasodilation of Human Arteries Through Disruption of Endothelial Hemoglobin-eNOS Interactions.

IF 38.6 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Circulation Pub Date : 2025-01-07 Epub Date: 2024-12-05 DOI:10.1161/CIRCULATIONAHA.123.066003
Steven D Brooks, A Parker Ruhl, Xianke Zeng, Phillip Cruz, Sergio A Hassan, Olena Kamenyeva, Md Abdul Hakim, Lauryn A Ridley, Bianca M Nagata, Juraj Kabat, Sundar Ganesan, Rachel L Smith, Mary Jackson, Jessica Nino de Rivera, Alison J McLure, Jarrett M Jackson, Robert O Emeh, Naomi Tesfuzigta, Kyeisha Laurence, Stacy Joyce, Christina Yek, Sophana Chea, Derron A Alves, Brant E Isakson, Jessica Manning, Jeremy L Davis, Hans C Ackerman
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引用次数: 0

Abstract

Background: Severe malaria is associated with impaired nitric oxide (NO) synthase (NOS)-dependent vasodilation, and reversal of this deficit improves survival in murine models. Malaria might have selected for genetic polymorphisms that increase endothelial NO signaling and now contribute to heterogeneity in vascular function among humans. One protein potentially selected for is alpha globin, which, in mouse models, interacts with endothelial NOS (eNOS) to negatively regulate NO signaling. We sought to evaluate the impact of alpha globin gene deletions on NO signaling and unexpectedly found human arteries use not only alpha but also beta globin to regulate eNOS.

Methods: The eNOS-hemoglobin complex was characterized by multiphoton imaging, gene expression analysis, and coimmunoprecipitation studies of human resistance arteries. Novel contacts between eNOS and hemoglobin were mapped using molecular modeling and simulation. Pharmacological or genetic disruption of the eNOS-hemoglobin complex was evaluated using pressure myography. The association between alpha globin gene deletion and blood pressure was assessed in a population study.

Results: Alpha and beta globin transcripts were detected in the endothelial layer of the artery wall. Imaging colocalized alpha and beta globin proteins with eNOS at myoendothelial junctions. Immunoprecipitation demonstrated that alpha globin and beta globin form a complex with eNOS and cytochrome b5 reductase. Modeling predicted negatively charged glutamic acids at positions 6 and 7 of beta globin to interact with positively charged arginines at positions 97 and 98 of eNOS. Arteries from donors with a glutamic acid-to-valine substitution at beta globin position 6 (sickle trait) exhibited increased NOS-dependent vasodilation. Alpha globin gene deletions were associated with decreased arterial alpha globin expression, increased NOS-dependent vasodilation, and lower blood pressure. Mimetic peptides that targeted the interactions between hemoglobin and eNOS recapitulated the effects of these genetic variants on human arterial vasoreactivity.

Conclusions: Alpha and beta globin subunits of hemoglobin interact with eNOS to restrict NO signaling in human resistance arteries. Malaria-protective genetic variants that alter the expression of alpha globin or the structure of beta globin are associated with increased NOS-dependent vasodilation. Targeting the hemoglobin-eNOS interface could potentially improve NO signaling in diseases of endothelial dysfunction such as severe malaria or chronic cardiovascular conditions.

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镰状性状和α地中海贫血通过破坏内皮血红蛋白- enos相互作用增加了nos依赖性的人动脉血管舒张。
背景:严重疟疾与一氧化氮(NO)合成酶(NOS)依赖性血管舒张功能受损有关,逆转这种缺陷可提高小鼠模型的存活率。疟疾可能选择了增加内皮NO信号的遗传多态性,现在导致了人类血管功能的异质性。一种可能被选择的蛋白质是α -珠蛋白,在小鼠模型中,它与内皮细胞NOS (eNOS)相互作用,负向调节NO信号。我们试图评估α珠蛋白基因缺失对NO信号的影响,意外地发现人类动脉不仅使用α珠蛋白,还使用β珠蛋白来调节eNOS。方法:采用多光子成像、基因表达分析和人抵抗动脉共免疫沉淀研究对enos -血红蛋白复合物进行表征。利用分子建模和模拟绘制了eNOS与血红蛋白之间的新接触。使用压力肌图评估enos -血红蛋白复合物的药理学或遗传破坏。在一项人口研究中评估了α -珠蛋白基因缺失与血压之间的关系。结果:在动脉壁内皮层检测到α和β珠蛋白转录本。与eNOS在肌内皮连接处共定位的α和β球蛋白成像。免疫沉淀表明,α -珠蛋白和β -珠蛋白与eNOS和细胞色素b5还原酶形成复合物。模型预测β -珠蛋白第6位和第7位带负电的谷氨酸与eNOS第97位和第98位带正电的精氨酸相互作用。6号-珠蛋白位置谷氨酸-缬氨酸取代的供体动脉(镰状性状)表现出nos依赖性血管舒张增加。α -珠蛋白基因缺失与动脉α -珠蛋白表达降低、nos依赖性血管舒张增加和血压降低有关。靶向血红蛋白和eNOS之间相互作用的模拟肽再现了这些遗传变异对人类动脉血管反应性的影响。结论:血红蛋白α和β球蛋白亚基与eNOS相互作用,限制人抵抗动脉NO信号。改变α -珠蛋白表达或β -珠蛋白结构的疟疾保护性基因变异与nos依赖性血管舒张增加有关。靶向血红蛋白- enos界面可能潜在地改善内皮功能障碍疾病(如严重疟疾或慢性心血管疾病)中的NO信号。
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来源期刊
Circulation
Circulation 医学-外周血管病
CiteScore
45.70
自引率
2.10%
发文量
1473
审稿时长
2 months
期刊介绍: Circulation is a platform that publishes a diverse range of content related to cardiovascular health and disease. This includes original research manuscripts, review articles, and other contributions spanning observational studies, clinical trials, epidemiology, health services, outcomes studies, and advancements in basic and translational research. The journal serves as a vital resource for professionals and researchers in the field of cardiovascular health, providing a comprehensive platform for disseminating knowledge and fostering advancements in the understanding and management of cardiovascular issues.
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