兔肾皮质质膜中[3H]布美他尼与Na+K+Cl“共转运体”结合的归属:一个警告。

N M Griffiths, N L Simmons
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引用次数: 8

摘要

3h标记的环利尿剂布美他尼已被用于研究环利尿剂与纯化兔肾皮质(和外髓质)质膜的结合。在0-10微米范围内,在主要含有Na、K和Cl离子的缓冲液中,布美他尼与部分纯化的皮质质膜结合,包括线性非饱和成分(用100微米未标记的布美他尼评估)和由高亲和力和低亲和力结合位点组成的饱和成分,分别在1.3微米和220微米观察到半最大结合。当质膜在连续Percoll梯度上进一步纯化时,发现高亲和力位点存在于富含基底外侧膜标记的部分中,而布美他尼与富含刷边或线粒体膜标记的部分结合的亲和力较低。布美他尼与基底侧膜标记富集组分结合的几个特征与与环状利尿剂抑制的Na+K+Cl“共转运体”的结合一致:在1.8微米处观察到半最大结合,有限最大结合容量为78 pmol/mg。几种循环利尿剂置换[3H]布美他尼的相对疗效为布美他尼大于吡雷他尼大于呋塞米=乙酸。发现利尿剂环的结合取决于介质的离子组成,Na, K和Cl需要给予最大的结合。我们测试了probenecid和4,4'-二异硫氰二苯乙烯-2,2'-二磺酸盐(DIDS)与[3H]布美他尼竞争的能力,因为这些化合物是已知的近端肾元阴离子分泌的抑制剂。DIDS和probenecid都能有效地与[3H]布美他胺结合。在完整的MDCK细胞中使用不敏感的86Rb (K)内流对这些化合物抑制“共转运”通量的能力进行了测试。在取代[3H]布美他胺与肾质膜结合的浓度下,Probenecid是一种有效的“共转运”抑制剂,而DIDS则不是。根据这一证据,讨论了目前使用[3H]布美他尼结合识别肾膜“共转运体”的标准的充分性。
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Attribution of [3H]bumetanide binding to the Na+K+Cl 'co-transporter' in rabbit renal cortical plasma membranes: a caveat.

The 3H-labelled loop diuretic bumetanide has been used to investigate loop diuretic binding to purified plasma membranes from rabbit kidney cortex (and outer medulla). Bumetanide binding to partially purified cortical plasma membranes in the range 0-10 microM, in a buffer containing principally Na, K and Cl ions, consists of a linear non-saturable component as assessed by 100 microM unlabelled bumetanide, and a saturable component consisting of high- and low-affinity binding sites, half-maximal binding being observed at 1.3 and 220 microM, respectively. The high-affinity site was found to be present in a fraction enriched in basolateral membrane markers when plasma membranes were further purified on a continuous Percoll gradient, whilst bumetanide binding to fractions enriched in brush-border or mitochondrial membrane markers was of lower affinity. Several features of bumetanide binding to basolateral membrane marker-enriched fractions are consistent with binding to the Na+K+Cl 'co-transporter' inhibited by loop diuretics: half-maximal binding was observed at 1.8 microM, with a finite maximal binding capacity of 78 pmol/mg. The relative efficacy of several loop diuretics for displacement of [3H]bumetanide was bumetanide greater than piretanide greater than furosemide = ethacrynic acid. Binding of loop diuretic was found to be dependent upon the medium ionic composition, Na, K and Cl being required to give maximal binding. The ability of probenecid and 4,4'-diisothiocyanostilbene-2,2'-disulphonate (DIDS) to compete with [3H]bumetanide was tested since these compounds are known inhibitors of anion secretion in the proximal nephron. Both DIDS and probenecid were able to effectively compete with [3H]bumetanide binding. A test of the ability of these compounds to inhibit 'co-transport' flux was made in intact MDCK cells using the ouabain-insensitive 86Rb (K) influx. Probenecid, at the concentrations seen to displace [3H]bumetanide binding to renal plasma membranes, was an effective inhibitor of 'co-transport' whereas DIDS was not. The adequacy of present criteria as to the identification of the 'co-transporter' in renal membranes using [3H]bumetanide binding are discussed in the light of this evidence.

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