Darrow A L, Fung-Leung W P, Ye R D, Santulli R J, Cheung W M, Derian C K, Burns C L, Damiano B P, Zhou L, Keenan C M, Peterson P A, Andrade-Gordon P
R. W. Johnson Pharmaceutical Research Institute, Spring House, PA 19477, USA.
Thromb Haemost. 1996 Dec;76(6):860-6.
The thrombin receptor (ThrR) is a membrane-bound, G-protein-coupled receptor for the serine protease thrombin. This receptor is expressed in a wide variety of cells and tissues, and elicits a range of physiological responses associated with tissue injury, inflammation, and wound repair. To achieve a better understanding of the physiological role of the ThrR, we have employed homologous recombination to create mice with a disrupted ThrR gene. Following heterozygous (+/-) intercrosses, a total of 351 surviving offspring were genotyped. Only 7% of these offspring were identified as homozygous (-/-) for the disrupted allele, indicating a profound effect on embryonic development. Paradoxically, adult ThrR-/- mice appeared to be normal by anatomical and histological analysis, including their platelet number and function. Similarly, ThrR deficiency had no detectable effect in adult ThrR-/- mice on basal heart rate, arterial blood pressure, vasomotor responses to angiotensin II and acetycholine, and coagulation parameters, even though the ThrR is expressed in many cardiovascular tissue types. In addition, the loss of ThrR function in the peripheral vasculature of adult ThrR-/- mice was confirmed by the absence of various standard hemodynamic effects of the ThrR-activating peptides SFLLRN-NH2 and TFLLRNPNDK-NH2. Our results indicate that ThrR deficiency has a strong impact on fetal development; however. ThrR-/- mice that proceed to full development display surprisingly little change in phenotype compared to the wild-type.
凝血酶受体(ThrR)是一种与膜结合的、G蛋白偶联的丝氨酸蛋白酶凝血酶受体。该受体在多种细胞和组织中表达,并引发一系列与组织损伤、炎症和伤口修复相关的生理反应。为了更好地理解ThrR的生理作用,我们利用同源重组技术培育出了ThrR基因缺失的小鼠。杂合子(+/-)相互交配后,对总共351只存活后代进行了基因分型。这些后代中只有7%被鉴定为缺失等位基因的纯合子(-/-),这表明对胚胎发育有深远影响。矛盾的是,通过解剖学和组织学分析,成年ThrR-/-小鼠似乎是正常的,包括它们的血小板数量和功能。同样,ThrR缺乏对成年ThrR-/-小鼠的基础心率、动脉血压、对血管紧张素II和乙酰胆碱的血管舒缩反应以及凝血参数没有可检测到的影响,尽管ThrR在许多心血管组织类型中都有表达。此外,成年ThrR-/-小鼠外周血管中ThrR功能的丧失通过ThrR激活肽SFLLRN-NH2和TFLLRNPNDK-NH2的各种标准血流动力学效应的缺失得到证实。我们的结果表明,ThrR缺乏对胎儿发育有强烈影响;然而,发育完全的ThrR-/-小鼠与野生型相比,其表型变化出人意料地小。