精氨酸加压素受体在大鼠肾收集小管中的内化和循环。

J K Kim, S N Summer, R W Schrier
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引用次数: 8

摘要

精氨酸抗利尿激素(AVP)与两种不同的受体结合,启动血管加压(V1受体)和水渗透作用(V2受体)。V1受体在培养的血管平滑肌细胞和肝细胞中的内化和再循环最近得到证实。然而,AVP V2受体在肾集合小管中的受体周期尚未明确。因此,本研究旨在探讨AVP V2受体的循环,包括AVP与表面受体的结合、内化和在离体外髓收集小管中的潜在再循环。AVP表面结合在10 min内达到最大值,25微克/毫升胰蛋白酶完全抑制AVP表面结合。125I-AVP表面结合的Scatchard图显示单个V2受体群体的Kd为1.92 × 10(-9) M, Bmax为1.77 × 10(-11) M或590 fmol /mg蛋白。81.7%(72-85%)的特异性结合受体被内化(特异性表面结合:742.8 +/- 111.1 vs内化结合:607.3 +/- 27.8 fmol结合/mg蛋白)。内化后90%以上的表面结合受体被回收到细胞表面(对照表面结合:584.0 +/- 64.0 vs回收表面结合:546.6 +/- 32.0 fmol结合/mg蛋白)。环己亚胺(40微克/毫升)不抑制受体的再循环(对照再循环表面结合:546.6 +/- 32.0 vs环己亚胺再循环表面结合:505.0 +/- 54.8 fmol结合/mg蛋白),表明受体与受体配体复合物解离后没有再合成。因此,这些研究表明AVP V2受体在大鼠肾收集小管中被内化和循环。
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Arginine vasopressin receptor internalization and recycling in rat renal collecting tubules.

Arginine vasopressin (AVP) binds to two distinct receptors to initiate vasopressor (V1 receptor) and hydroosmotic actions (V2 receptor). Internalization and recycling of the V1 receptor in cultured vascular smooth muscle cells and hepatocytes have recently been demonstrated. However, the receptor cycle of the AVP V2 receptor in the renal collecting tubules has not yet been well defined. Therefore, the present study was undertaken to investigate the AVP V2 receptor cycle, including AVP binding to the surface receptor, internalization and potential recycling in isolated outer medullary collecting tubules. The maximal AVP surface binding was reached in 10 min, and 25 micrograms/ml trypsin completely inhibited the surface binding. A Scatchard plot of 125I-AVP surface binding indicated a single population of V2 receptors with a Kd of 1.92 x 10(-9) M and a Bmax of 1.77 x 10(-11) M or 590 fmoles/mg protein. 81.7% (72-85%) of specific bound receptor was internalized (specific surface binding: 742.8 +/- 111.1 vs internalized binding: 607.3 +/- 27.8 fmoles bound/mg protein). More than 90% of surface bound receptor was recycled to the cell surface after internalization (control surface binding: 584.0 +/- 64.0 vs recycled surface binding: 546.6 +/- 32.0 fmoles bound/mg protein). Cycloheximide (40 micrograms/ml) did not inhibit the receptor recycling (control recycled surface binding: 546.6 +/- 32.0 vs cycloheximide recycled surface binding: 505.0 +/- 54.8 fmoles bound/mg protein), thus suggesting that the receptors were not resynthesized after dissociation from the receptor-ligand complex. These studies therefore demonstrate that the AVP V2 receptor is internalized and recycled in the rat renal collecting tubule.

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