亚酸盐通过依赖于髓红蛋白的氧化生成来调节缺氧血管扩张
Matthias Totzeck1, Ulrike B Hendgen-Cotta, Peter Luedike
1Department of Medicine, Division of Cardiology, Pulmonology, and Vascular Medicine, University Hospital Duesseldorf, Germany.
Circulation
|June 12, 2012
概括
内源性亚酸盐通过血管肌球蛋白降解为氧化 (NO·),这是缺氧血管扩张的关键途径. 这种机制提高了血液流动,以满足在低氧条件下满足氧气需求.
科学领域:
- 生理学 生理学 生理学
- 生物化学 生物化学
- 血管生物学 血管生物学
背景情况:
- 缺氧血管扩张对于将血液供应与氧气需求相匹配至关重要,具有不确定的传感和信号机制.
- 心脏中的髓质球蛋白在缺血期间将酸盐减少为氧化 (NO·).
- 鱼类血管系统中的肌球蛋白和酸盐在血管扩张中的作用是最近的观察结果.
研究的目的:
- 调查内源性亚酸盐和血管肌球蛋白在缺氧血管扩张中的作用.
- 阐明涉及酸盐依赖血管扩张的信号通路.
主要方法:
- 在体内和体外研究了依赖酸盐的缺氧血管扩张.
- 使用了肌球蛋白淘汰小鼠和NO合成酶淘汰模型.
- 评估NO·生成和可溶性瓜尼酸环酶/cGMP信号.
主要成果:
- 肌球蛋白在血管光滑肌肉中表达,并对酸盐依赖的缺氧血管扩张有显著的贡献.
- 脱氧化肌球蛋白将酸盐减少为NO·,激活cGMP信号传递.
- 血管扩张,NO·生成和信号传递在肌球蛋白缺乏的小鼠中受损.
- 只有肌球蛋白,而不是NO合成酶,被发现有助于全身缺氧血管扩张.
结论:
- 内源性亚酸盐是缺氧血管扩张的生理媒介.
- 由酸盐产生的由肌球蛋白驱动的NO·产生在缺氧期间增强了血液流动.
- 这一途径对于将氧气供应与代谢需求相匹配至关重要.
相关概念视频
Nitric Oxide Signaling Pathway
5.3K
Nitric oxide (NO), an inorganic gas, acts as a potent second messenger in most animal and plant tissues. NO diffuses out of the cells that produce it and enters the neighboring cells to generate a downstream response. NO synthase (NOS) catalyzes NO production by the deamination of the amino acid arginine. There are three isoforms of NOS. Endothelial cells have endothelial NOS (eNOS), nerve and muscle cells have neuronal NOS (nNOS), and macrophages produce inducible NOS (iNOS) upon exposure...
5.3K
Antihypertensive Drugs: Vasodilators
2.5K
Vasodilators, primarily affecting the smooth muscles within arterial and venous walls, are commonly used for hypertension treatment. Medications such as minoxidil and hydralazine primarily target arteries and arterioles, while sodium nitroprusside acts on arterioles and venules. Minoxidil, functioning as a prodrug, is metabolized by hepatic sulfotransferase into its active form, minoxidil sulfate, after oral administration. This metabolite binds to the sulfonylurea receptor (SUR) component of...
2.5K
Antianginal Drugs: Nitrates and β-Blockers
1.9K
In cardiovascular health, antianginal drugs combat angina pectoris — a condition marked by chest pain owing to diminished blood flow to the heart.
Organic nitrates, such as nitroglycerin, play a pivotal role. Once metabolized, they liberate nitric oxide, a molecular marvel. Nitric oxide triggers guanylyl cyclase and augments cGMP production. This biochemical cascade orchestrates the relaxation of vascular smooth muscles, ushering in vasodilation and enhancing coronary blood flow....
Organic nitrates, such as nitroglycerin, play a pivotal role. Once metabolized, they liberate nitric oxide, a molecular marvel. Nitric oxide triggers guanylyl cyclase and augments cGMP production. This biochemical cascade orchestrates the relaxation of vascular smooth muscles, ushering in vasodilation and enhancing coronary blood flow....
1.9K
Autoregulation of Blood Flow
10.1K
Autoregulation mechanisms are characterized by their inherent capacity for self-regulation without necessitating specific nervous stimulation or endocrine control. These mechanisms facilitate the adjustment of blood flow and, therefore, perfusion specific to each tissue region. This self-regulation encompasses chemical signals and myogenic controls.
Chemical Signaling in Autoregulation
Chemical signaling operates at the precapillary sphincter level, inciting either contraction or relaxation....
Chemical Signaling in Autoregulation
Chemical signaling operates at the precapillary sphincter level, inciting either contraction or relaxation....
10.1K
Oxygen Transport in the Blood
8.3K
Hemoglobin (Hb) is a crucial molecule in the human body, consisting of four polypeptide chains, each bound to an iron-containing heme group. This unique structure enables hemoglobin to bind to oxygen, with each molecule capable of combining with four molecules of oxygen, leading to rapid and reversible oxygen loading. When fully loaded with oxygen, it is called oxyhemoglobin, while hemoglobin that has released oxygen is called reduced hemoglobin or deoxyhemoglobin. As hemoglobin binds oxygen,...
8.3K
Hypoxia
2.4K
Hypoxia is a medical condition characterized by an inadequate oxygen supply to body tissues. It typically manifests as a bluish discoloration of the skin and mucosae, especially in fair-skinned individuals, when hemoglobin (Hb) saturation drops below 75%.
Types of Hypoxia
There are four primary types of hypoxia, each resulting from a different cause:
1. Anemic hypoxia: This type occurs due to insufficient oxygen delivery caused by a lack of red blood cells (RBCs) or RBCs with abnormal or...
Types of Hypoxia
There are four primary types of hypoxia, each resulting from a different cause:
1. Anemic hypoxia: This type occurs due to insufficient oxygen delivery caused by a lack of red blood cells (RBCs) or RBCs with abnormal or...
2.4K


