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117399-93-6

中文名称 人内皮素3
英文名称 H-CYS-THR-CYS-PHE-THR-TYR-LYS-ASP-LYS-GLU-CYS-VAL-TYR-TYR-CYS-HIS-LEU-ASP-ILE-ILE-TRP-OH
CAS 117399-93-6
分子式 C121H168N26O33S4
分子量 2643.04
MOL 文件 117399-93-6.mol
更新日期 2024/05/21 11:25:55
117399-93-6 结构式 117399-93-6 结构式

基本信息

中文别名
人内皮素3
内皮素-3
小鼠内皮素-3
人内皮素3, ≥97% (HPLC), POWDER
英文别名
et-3
EDN3
HSCR4
human,rat
ET-3, HUMAN
ENDOTHELIN-3
Rat endothelin-3
ET-3 (HUMAN, RAT)
Endothelin 3【rat】
Human endothelin-3
所属类别
生物化工:多肽

物理化学性质

密度1.285±0.06 g/cm3(Predicted)
储存条件−20°C
储存条件−20°C
溶解度H2OPeptide Solubility and Storage Guidelines:1.??Calculate the length of the peptide.2.??Calculate the overall charge of the entire peptide according to the following table:3.??Recommended solution:
形态powder
颜色white
水溶解性Soluble to 1 mg/ml in water

安全数据

危险性符号(GHS)
GHS06
警示词危险
危险性描述H300+H330
安全说明22
WGK Germany3
WGK Germany3

常见问题列表

概述
内皮素是1988年由日本学者Yanagisawa从猪主动脉内皮细胞培养液中发现的一种强有力的血管收缩肽,它由21个氨基酸组成,是体内作用最强、持续时间最久的一种收缩血管的活性多肽。它不仅是存在于内皮细胞中的收缩血管、升高血压的循环激素,而且是广泛分布于神经组织、血管平滑肌及巨噬细胞中的一种潜在的神经递质和细胞生长因子。除血管内皮细胞外,其他多种细胞如神经元、表皮细胞、心肌细胞、肾上腺等细胞均能分泌内皮素,并以自分泌/旁分泌的方式参与促进细胞增殖及体内多系统的生理功能调节。目前发现生物体内有内皮素-1,2,3(ET-1,ET-2,ET-3)及血管活性肠收缩肽(vasoactiveintestinalconstrictor,VIC)4种异构肽,称为“内皮素家族”。ET-1主要在内皮细胞中表达,ET-2以肾脏表达较多,内皮素3主要在神经系统中表达,而VIC则是在小鼠体内发现的一种对肠道平滑肌有收缩作用的活性多肽。
应用
人内皮素3与细胞表面上的内皮素受体B相互作用。在整个胚胎发育期间,EDN3参与神经嵴细胞,其从发育中的脊髓迁移到胚胎中的特定区域,在那里它们产生许多不同类型的细胞。人内皮素3和EDN3R对于大肠(肠神经)和黑素细胞(产生黑色素)中神经的形成是必需的。EDN3基因的突变与Waardenburg综合征相关,IV型的特征在于皮肤,毛发和眼睛着色的变化。人内皮素3基因的突变与导致严重便秘或肠梗阻的先天性巨结肠症相关。
生物活性
Endothelin-3, human, mouse, rabbit, rat 是由21个氨基酸组成的血管活性肽,可与G蛋白连接的跨膜受体,ET-RA 和ET-RB 结合。
靶点

ET-RA, ET-RB

体外研究

The endothelins (ETs) are a family of 21-amino-acid vasoconstrictor peptides comprising three distinct isoforms: ET-1, ET2 and Endothelin-3. Endothelin-3 is detected in plasma, heart, brain and vascular smooth muscle cells (VSMCs). The surface enzymes of VSMCs break down big Endothelin-3 to the corresponding mature peptide, Endothelin-3. Endothelin-3 down-regulate endothelin ETA receptor expression in coronary artery VSMCs without affecting receptor density or functional ETA receptor responses. By contrast, high concentrations of Endothelin-3 (100 nM) increase the expression of ETB receptors but abolish the vasoconstrictor response of the receptors, possibly due to the desensitizing effect of Endothelin-3. Endothelin-3 stimulates ENCC adhesion to various ECM components. Endothelin-3 induces rapid changes in ENCC shape and protrusion dynamics favouring sustained growth and stabilization of lamellipodia, a process coincident with the increase in the number of focal adhesions and activated β1-integrins.

体内研究

Endothelin-3 at low concentrations may attenuate inflammatory responses via ETB2 activation and NO production. Endothelin-3, which acts mainly on ETB, at low concentrations specifically inhibited platelet-activating factor (PAF)-induced paw oedema, whereas neither ET-1 nor Endothelin-2, both of which act on ETA and ETB, showed inhibitory activity. The inhibition by ET-1 and Endothelin-3 (each 0.5 pmol/paw) in the presence of BQ-123 (66.4 ± 6.7 % and 65.4 ± 22.6 %, respectively), is comparable to that by Endothelin-3 (0.5 pmol/paw) alone (65.4 ± 10.9 %), whereas neither ET-1 nor Endothelin-3 in the presence of BQ-788 showed inhibitory activity.

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