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双功能亚胺酯对血管加压素诱导的膜事件的稳定作用

Stabilization of vasopressin-induced membrane events by bifunctional imidoesters.

作者信息

Rapoport J, Kachadorian W A, Muller J, Franki N, Hays R M

出版信息

J Cell Biol. 1981 May;89(2):261-6. doi: 10.1083/jcb.89.2.261.

Abstract

Vasopressin increases the water permeability of the luminal membrane of the toad bladder epithelial cell. This change in permeability correlates with the occurrence in luminal membranes of intramembrane particle aggregates, which may be the sites for transmembrane water flow. Withdrawal of vasopressin is ordinarily associated with a rapid reduction of water flow to baseline values and a simultaneous disappearance of the particle aggregates. The bifunctional imidoesters dithiobispropionimidate (DTBP) and dimethylsuberimidate (DMS), which cross-link amino groups in membrane proteins and lipids, slow the return of water flow to baseline after vasopressin withdrawal. Cross-linking is maximal at pH 10, and is reduced as pH is lowered. Freeze-fracture studies show persistence of luminal membrane particle aggregates in cross-linked bladders and a reduction in their frequency as water flow diminishes. Fusion of aggregate-containing cytoplasmic tubular membrane structures with the luminal membrane is also maintained by the imidoesters. Reductive cleavage of the central S-S bond of DTBP by beta-mercaptoethanol reverses cross-linking, permitting resumption of the rapid disappearance of the vasopressin effect. Bladders that have undergone DTBP cross-linking and beta-mercaptoethanol reduction respond to a second stimulation by vasopressin. Thus, the imidoesters provide a physiologic and reversible means of stabilizing normally rapid membrane events.

摘要

血管加压素可增加蟾蜍膀胱上皮细胞管腔膜的水通透性。这种通透性的变化与管腔膜中膜内颗粒聚集体的出现相关,这些聚集体可能是跨膜水流的位点。撤去血管加压素通常会使水流量迅速降至基线值,并同时使颗粒聚集体消失。双功能亚胺酯二硫代双丙酰亚胺(DTBP)和二甲基辛二酰亚胺(DMS)可使膜蛋白和脂质中的氨基交联,减缓撤去血管加压素后水流量恢复到基线的速度。交联在pH 10时最大,随着pH降低而减少。冷冻蚀刻研究表明,交联膀胱中管腔膜颗粒聚集体持续存在,且随着水流量减少其频率降低。亚胺酯还能维持含聚集体的细胞质管状膜结构与管腔膜的融合。用β-巯基乙醇还原DTBP的中心S-S键可逆转交联,使血管加压素效应迅速消失的过程得以恢复。经过DTBP交联和β-巯基乙醇还原处理的膀胱对血管加压素的第二次刺激仍有反应。因此,亚胺酯提供了一种生理且可逆的方法来稳定通常快速发生的膜事件。

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Downregulation of vasopressin receptors in toad bladder.蟾蜍膀胱中血管加压素受体的下调
Am J Physiol. 1986 Mar;250(3 Pt 1):C453-9. doi: 10.1152/ajpcell.1986.250.3.C453.

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Effect of hydrazine on transport on toad urinary bladder.肼对蟾蜍膀胱转运的影响。
Am J Physiol. 1980 Oct;239(4):F319-F327. doi: 10.1152/ajprenal.1980.239.4.F319.

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