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Demonstration of processing and recycling of biologically active V1 vasopressin receptors in vascular smooth muscle.

机译:演示了血管平滑肌中具有生物活性的V1加压素受体的加工和回收利用。

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摘要

The present study examines the binding and postbinding cellular processing and recycling of the V1 arginine vasopressin (AVP) receptor in cultured vascular smooth muscle cells (VSMCs). The surface binding of AVP to VSMCs was temperature dependent and reached equilibrium within 60 min at 4 degrees C. Displacement studies with unlabeled AVP or a specific V1 AVP antagonist revealed a single class of V1 receptors (Bmax, 1.99 pmol [corrected] per mg of protein; Kd, 2.15 nM). Incubation of VSMCs with unlabeled 10 nM AVP to promote receptor internalization resulted in a time- and temperature-dependent loss of AVP surface binding. At 37 degrees C, maximum loss of binding sites (65%) occurred within 20 min. Recovery of AVP binding occurred rapidly (t1/2, 15-20 min at room temperature) and was uninfluenced by inhibiting protein synthesis with cycloheximide. Pretreating VSMCs with chloroquine prevented AVP receptor recycling, indicating that the AVP-receptor complex requires endosomal processing. The biological competence of the recycled AVP receptor was shown by AVP-induced Ca2+ uptake. The results of these studies therefore indicate that, after surface binding, the AVP-receptor complex internalizes and dissociates in an endosomal compartment. It is demonstrated that in VSMCs biologically active V1 AVP receptors recycle back to the cell surface, thus attenuating the loss of AVP surface binding sites.
机译:本研究检查了培养的血管平滑肌细胞(VSMC)中V1精氨酸加压素(AVP)受体的结合和结合后细胞加工及再循环。 AVP与VSMC的表面结合是温度依赖性的,并在4°C下在60分钟内达到平衡。用未标记的AVP或特定的V1 AVP拮抗剂进行的位移研究显示,一类V1受体(Bmax,1.99 pmol [校正] / mg蛋白质; Kd,2.15 nM)。用未标记的10 nM AVP孵育VSMC以促进受体内在化会导致AVP表面结合的时间和温度依赖性丧失。在37℃下,结合位点的最大损失(65%)在20分钟内发生。 AVP结合的恢复迅速发生(t1 / 2,在室温下15-20分钟),并且不受环己酰亚胺抑制蛋白合成的影响。用氯喹预处理VSMC可防止AVP受体再循环,这表明AVP受体复合物需要进行内体加工。回收的AVP受体的生物能力由AVP诱导的Ca2 +吸收显示。因此,这些研究的结果表明,在表面结合后,AVP-受体复合物在一个内体区室中内在化并解离。已证明在VSMC中,具有生物活性的V1 AVP受体可循环回到细胞表面,从而减弱AVP表面结合位点的损失。

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