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血管平滑肌细胞中对精氨酸加压素快速脱敏的机制。

Mechanisms of rapid desensitization to arginine vasopressin in vascular smooth muscle cells.

作者信息

Caramelo C, Tsai P, Okada K, Briner V A, Schrier R W

机构信息

Department of Medicine, University of Colorado School of Medicine, Denver 80262.

出版信息

Am J Physiol. 1991 Jan;260(1 Pt 2):F46-52. doi: 10.1152/ajprenal.1991.260.1.F46.

Abstract

This study characterized the rapid desensitization induced by arginine vasopressin (AVP) in vascular smooth muscle cells (VSMC) in culture. The Ca2+ mobilization response and, in some experiments, the intracellular pH changes were used as a probe for the desensitization phenomenon. In VSMC, AVP desensitization was homologous, concentration dependent, and occurred in less than 30 s. The desensitization was complete with 10(-7) M AVP. Receptor occupancy was a critical factor in the maintenance of desensitization, since complete hormone washing by acid glycine buffer produced an earlier (less than 5 min) recovery of the cell response, whereas partial hormone washing with saline (pH 7.4) required 15 min to produce any significant recovery. Protein kinase C activation was a significant mechanism in AVP desensitization, because protein kinase C downregulation inhibited the desensitization phenomenon. Receptor internalization was, however, not important for the desensitization phenomenon, since it still occurred at 4 degrees C. Treatment with pertussis toxin did not affect the Ca2+ mobilization response but decreased the AVP-mediated intracellular alkalinization, therefore suggesting that a Gi or Go protein may be involved in some but not all the aspects of the AVP signal transduction and the desensitization phenomena.

摘要

本研究对培养的血管平滑肌细胞(VSMC)中精氨酸加压素(AVP)诱导的快速脱敏进行了表征。钙离子动员反应以及在某些实验中的细胞内pH变化被用作脱敏现象的探针。在VSMC中,AVP脱敏是同源的、浓度依赖性的,且在不到30秒内发生。用10(-7)M AVP时脱敏是完全的。受体占据是维持脱敏的关键因素,因为用酸性甘氨酸缓冲液彻底洗涤激素可使细胞反应更早(不到5分钟)恢复,而用生理盐水(pH 7.4)部分洗涤激素则需要15分钟才能产生任何显著的恢复。蛋白激酶C激活是AVP脱敏的一个重要机制,因为下调蛋白激酶C可抑制脱敏现象。然而,受体内化对脱敏现象并不重要,因为在4℃时仍会发生脱敏。用百日咳毒素处理不影响钙离子动员反应,但会降低AVP介导的细胞内碱化,因此表明Gi或Go蛋白可能参与AVP信号转导和脱敏现象的某些但不是所有方面。

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