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槲皮素通过与唾液酸相互作用,保护红细胞免受无细胞组蛋白引起的聚集、红细胞凋亡和延迟溶血。

Quercetin protects red blood cells from aggregation, eryptosis, and delayed hemolysis caused by cell-free histones through sialic acid interaction.

作者信息

Manikanta Kurnegala, NaveenKumar Somanathapura K, Mahalingam Shanmuga S, Sandesha Vaddaragudisalu D, Tejas Chandrashekar, Sumedini Mysuru L, Sunitha Kabburahalli, Kemparaju Kempaiah, Girish Kesturu S

机构信息

Department of Studies in Biochemistry, University of Mysore, Manasagangotri, Mysuru, 570006, India.

Department of Biological Sciences, School of Dental Medicine, Case Western Reserve University, Cleveland, OH, 44106, USA.

出版信息

Biochem Biophys Res Commun. 2025 Jun 30;767:151859. doi: 10.1016/j.bbrc.2025.151859. Epub 2025 Apr 29.

Abstract

Histones are nuclear proteins and play a vital role in regulating gene expression. Cell free histones in the circulation proved as damage-associated molecular patterns and were positively associated with various inflammatory disease conditions. Also, cell-free histones directly induce toxicity toward blood cells and are implicated in vascular dysfunction. However, cell-free histones are known to induce RBCs dysfunction in several histone-associated disorders, leading to hypoxia conditions. In this study, we aimed to understand the mechanism underlying the dysfunction of RBCs induced by histones and explore the protective effect of quercetin. Histone treatment at lower doses induces RBCs aggregation while at higher doses it induces eryptosis and delayed hemolysis. Surprisingly, the removal of negatively charged sialic acid on the RBC membrane prevents histone-induced toxicity, thereby confirming the significance of the interaction between sialic acid and histone. Quercetin (QUE), a flavonoid, significantly inhibits histone-induced RBCs aggregation, eryptosis, and hemolysis. Most importantly, inhibition against the pro-coagulant phenotype of RBCs induced by histones, emphasizes the therapeutic potential of QUE on blood coagulation. Further, spectral and molecular docking studies confirm the interaction between histones and QUE. Collectively, this study highlights the therapeutic value of QUE in protecting the RBCs functions during histones-associated pathological conditions.

摘要

组蛋白是核蛋白,在调节基因表达中起着至关重要的作用。循环中的游离组蛋白被证明是损伤相关分子模式,与各种炎症性疾病状况呈正相关。此外,游离组蛋白直接诱导对血细胞的毒性,并与血管功能障碍有关。然而,已知游离组蛋白在几种与组蛋白相关的疾病中诱导红细胞功能障碍,导致缺氧状况。在本研究中,我们旨在了解组蛋白诱导红细胞功能障碍的潜在机制,并探索槲皮素的保护作用。较低剂量的组蛋白处理会诱导红细胞聚集,而较高剂量则会诱导红细胞凋亡和延迟溶血。令人惊讶的是,去除红细胞膜上带负电荷的唾液酸可防止组蛋白诱导的毒性,从而证实了唾液酸与组蛋白之间相互作用的重要性。黄酮类化合物槲皮素(QUE)可显著抑制组蛋白诱导的红细胞聚集、凋亡和溶血。最重要的是,抑制组蛋白诱导的红细胞促凝血表型,强调了QUE在血液凝固方面的治疗潜力。此外,光谱和分子对接研究证实了组蛋白与QUE之间的相互作用。总的来说,本研究突出了QUE在组蛋白相关病理状况下保护红细胞功能的治疗价值。

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