Szewczyk A, Wójcik G, Lobanov N A, Nałecz M J
Nencki Institute of Experimental Biology, Warsaw, Poland.
Biochem Biophys Res Commun. 1997 Jan 23;230(3):611-5. doi: 10.1006/bbrc.1996.6023.
Biochemical identification of mitochondrial sulfonylurea receptors has been carried out through binding studies performed with [3H]glibenclamide. The presence of a single class of low affinity binding sites for glibenclamide in the inner mitochondrial membrane has been found, with a KD of 360 +/- 48 nM and BMAX of 48 +/- 7 pmoles/mg in beef heart mitochondria. Glibenclamide binding was affected by other sulfonylureas (glipizide, glisoxepide) but not by potassium channel openers (diazoxide, pinacidil, RP66471). In both rat liver and beef heart mitochondria adenine nucleotides (ATP, ADP, AMP) and nucleotide analogs (triazine dyes) produced large inhibition (from 60 to 80%) of [3H]glibenclamide binding. Photoaffinity labeling of submitochondrial particles with [125I]-glibenclamide revealed a single specifically labeled polypeptide band of 28 kDa by SDS-PAGE that is postulated to be (or to form a part of) the mitochondrial sulfonylurea receptor.
通过使用[3H]格列本脲进行的结合研究,已对线粒体磺脲类受体进行了生化鉴定。在内线粒体膜中发现了一类对格列本脲具有低亲和力的结合位点,在牛心线粒体中,其解离常数(KD)为360±48 nM,最大结合量(BMAX)为48±7 pmol/mg。格列本脲的结合受到其他磺脲类药物(格列吡嗪、格列索脲)的影响,但不受钾通道开放剂(二氮嗪、匹那地尔、RP66471)的影响。在大鼠肝脏和牛心线粒体中,腺嘌呤核苷酸(ATP、ADP、AMP)和核苷酸类似物(三嗪染料)对[3H]格列本脲的结合产生了很大的抑制作用(60%至80%)。用[125I] - 格列本脲对亚线粒体颗粒进行光亲和标记,通过SDS - PAGE显示出一条28 kDa的单一特异性标记多肽带,推测其为线粒体磺脲类受体(或构成其一部分)。