Galectin-3 Regulates Smooth Muscle Contraction and Blood Pressure by Modulating CaV1.2 Channel Function.

IF 41.3 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS
Circulation Pub Date : 2026-09-01 Epub Date: 2026-06-15 DOI:10.1161/CIRCULATIONAHA.126.080022
Kelvin Wei Zhern Loh, Yanruo Zhou, Cong Liu, Jing Zhai, Chaitanya K Jaladanki, Cheryl Jia Yi Neo, Dejie Yu, Mui Cheng Liang, Mengxia Shen, Hao Fan, Ping Liao, Zhenyu Hu, Tuck Wah Soong
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引用次数: 0

Abstract

Background: Fine-tuning of CaV1.2 calcium channel activity by binding proteins represents a novel mechanism for regulating smooth muscle contraction and blood pressure (BP). This study aimed to elucidate the role of Gal-3 (galectin-3), a newly identified CaV1.2-binding protein, in the pathogenesis of hypertension.

Methods: In vitro, ex vivo, and in vivo experiments involving molecular and biochemical assays, in silico prediction, patch-clamp electrophysiologic recordings, immunohistochemistry, pressure myography, and tail-cuff BP measurements were used to evaluate the molecular mechanisms by which Gal-3 binds to and elevates membrane insertion of CaV1.2 channels. The experiments were performed in transfected HEK 293 cells, isolated smooth muscle cells, and arteries from smooth muscle-specific Gal-3 knockout mice and their wild-type littermates; spontaneously hypertensive rats; or human patients. In vivo experiments involving delivery of the blocking iGal3BP (inhibitory galectin-3-binding peptide) into spontaneously hypertensive rats were performed to investigate its effect on BP.

Results: We identified Gal-3 as a novel binding partner and unexpected positive modulator of the CaV1.2 channel through binding to the intracellular II-III loop. Gal-3 increased total and surface expression, current density, and open probability of CaV1.2 channels. Both CaV1.2 and Gal-3 were upregulated in hypertensive rat aortas and human pulmonary arteries. Conditional deletion of Gal-3 in smooth muscle markedly lowered CaV1.2 protein and BP in mice. With specific binding sites identified within both Gal-3 and the CaV1.2 II-III loop, the peptide iGal3BP, designed to block CaV1.2-Gal-3 interaction, significantly reduced BP in spontaneously hypertensive rats by decreasing CaV1.2 protein expression. Repeated iGal3BP administration resulted in cumulative peptide accumulation in mesenteric arteries and produced a sustained reduction in BP, which demonstrated greater long-lasting antihypertensive efficacy compared with amlodipine and losartan. Administration of iGal3BP in combination with a negative modulatory Gal-1 mimetic peptide that mimics Gal-1-CaV1.2 interaction returned systolic BP to normotensive levels within 4 hours and lowered BP in hypertensive rats in a sustained manner for 35 days.

Conclusions: These results provide strong evidence that Gal-based CaV1.2 channel modulators are novel therapeutic pathways for normalizing BP.

半凝集素-3通过调节CaV1.2通道功能调节平滑肌收缩和血压。
背景:结合蛋白对CaV1.2钙通道活性的微调是调节平滑肌收缩和血压(BP)的一种新机制。本研究旨在阐明新发现的cav1.2结合蛋白Gal-3 (galectin-3)在高血压发病机制中的作用。方法:通过体外、离体和体内实验,包括分子和生化分析、硅预测、膜片钳电生理记录、免疫组织化学、压力肌图和尾袖血压测量,来评估Gal-3结合并提高CaV1.2通道膜插入的分子机制。实验在转染的HEK 293细胞、分离的平滑肌细胞和动脉中进行,这些细胞来自平滑肌特异性Gal-3敲除小鼠及其野生型幼崽;自发性高血压大鼠;或者人类病人。在体内实验中,将iGal3BP(抑制性半乳糖凝集素-3结合肽)输送到自发性高血压大鼠体内,以研究其对血压的影响。结果:我们发现Gal-3是一种新的结合伙伴,通过与细胞内II-III环结合,是CaV1.2通道的意想不到的正调节剂。Gal-3增加了CaV1.2通道的总表达量和表面表达量、电流密度和打开概率。CaV1.2和Gal-3在高血压大鼠主动脉和人肺动脉中均上调。平滑肌条件缺失Gal-3可显著降低小鼠CaV1.2蛋白和血压。由于在Gal-3和CaV1.2 II-III环中都发现了特定的结合位点,肽iGal3BP被设计为阻断CaV1.2-Gal-3相互作用,通过降低CaV1.2蛋白的表达,显著降低了自发性高血压大鼠的血压。与氨氯地平和氯沙坦相比,反复给药iGal3BP可在肠系膜动脉中积累肽,使血压持续降低,显示出更持久的降压效果。iGal3BP与一种模拟Gal-1- cav1.2相互作用的负调节性Gal-1模拟肽联合使用,可在4小时内使高血压大鼠的收缩压恢复到正常水平,并持续降低血压35天。结论:这些结果提供了强有力的证据,证明基于gal的CaV1.2通道调节剂是血压正常化的新治疗途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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