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蛇肾小管对烟酰胺单核苷酸(NMN)的转运:胆碱的作用、反向转运、氢离子-烟酰胺单核苷酸交换

NMN transport by snake renal tubules: choline effects, countertransport, H+-NMN exchange.

作者信息

Dantzler W H, Brokl O H

机构信息

Department of Physiology, College of Medicine, University of Arizona, Tucson 85724.

出版信息

Am J Physiol. 1987 Oct;253(4 Pt 2):F656-63. doi: 10.1152/ajprenal.1987.253.4.F656.

Abstract

N1-methylnicotinamide (NMN) transport by isolated perfused snake (Thamnophis spp.) proximal renal tubules was examined for effects of choline and evidence of countertransport of organic cations and H+-NMN exchange. Choline had no effect on NMN transport, supporting the concept of multiple organic cation transport processes. A transconcentration of unlabeled NMN had no effect on unidirectional transepithelial fluxes of labeled NMN. Low pH in the bath enhanced the lumen-to-bath flux of labeled NMN and, at the same time, reduced the intracellular concentration of labeled NMN, but low pH in the perfusate had no effect on the bath-to-lumen flux of labeled NMN. To examine transport at single membranes more directly in intact tubules, we examined efflux of labeled NMN across the luminal membrane of tubules covered with oil and across the peritubular membrane of tubules with oil-filled lumens. Neither unlabeled NMN nor low pH in the perfusate had any effect on efflux across the luminal membrane, providing no evidence of countertransport or H+-NMN exchange across this membrane. However, unlabeled NMN and low pH in the bath both significantly stimulated efflux across the peritubular membrane, providing evidence that both countertransport of organic cations and H+-NMN exchange may play a role in transport of NMN across this membrane.

摘要

研究了分离灌注的蛇(束带蛇属)近端肾小管对N1-甲基烟酰胺(NMN)的转运,以考察胆碱的作用以及有机阳离子逆向转运和H⁺-NMN交换的证据。胆碱对NMN转运无影响,这支持了多种有机阳离子转运过程的概念。未标记的NMN的跨浓度对标记的NMN的单向跨上皮通量无影响。浴液低pH增强了标记的NMN从管腔到浴液的通量,同时降低了标记的NMN的细胞内浓度,但灌注液低pH对标记的NMN从浴液到管腔的通量无影响。为了更直接地在完整肾小管中研究单膜转运,我们研究了标记的NMN穿过覆盖有油的肾小管管腔膜和穿过管腔充满油的肾小管周膜的流出情况。灌注液中未标记的NMN和低pH对穿过管腔膜的流出均无任何影响,没有提供该膜存在逆向转运或H⁺-NMN交换的证据。然而,浴液中未标记的NMN和低pH均显著刺激了穿过肾小管周膜的流出,这表明有机阳离子逆向转运和H⁺-NMN交换可能在NMN穿过该膜的转运中均起作用。

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