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多种药理学伴侣对囊性纤维化跨膜传导调节因子加工突变体成熟的累加效应。

Additive effect of multiple pharmacological chaperones on maturation of CFTR processing mutants.

作者信息

Wang Ying, Loo Tip W, Bartlett M Claire, Clarke David M

机构信息

Department of Medicine, University of Toronto, Rm 7342, Medical Sciences Building, 1 King's College Circle, Toronto, ON, Canada M5S 1A8.

出版信息

Biochem J. 2007 Sep 1;406(2):257-63. doi: 10.1042/BJ20070478.

Abstract

The most common cause of CF (cystic fibrosis) is the deletion of Phe(508) (DeltaF508) in the CFTR [CF TM (transmembrane) conductance regulator] chloride channel. One major problem with DeltaF508 CFTR is that the protein is defective in folding so that little mature protein is delivered to the cell surface. Expression of DeltaF508 CFTR in the presence of small molecules known as correctors or pharmacological chaperones can increase the level of mature protein. Unfortunately, the efficiency of corrector-induced maturation of DeltaF508 CFTR is probably too low to have therapeutic value and approaches are needed to increase maturation efficiency. We postulated that expression of DeltaF508 CFTR in the presence of multiple correctors that bound to different sites may have an additive effect on maturation. In support of this mechanism, we found that expression of P-glycoprotein (CFTR's sister protein) processing mutants in the presence of two compounds that bind to different sites (rhodamine B and Hoechst 33342) had an additive effect on maturation. Therefore we tested whether expression of DeltaF508 CFTR in the presence of combinations of three different classes of corrector molecules would increase its maturation efficiency. It was found that the combination of the quinazoline VRT-325 together with the thiazole corr-2b or bisaminomethylbithiazole corr-4a doubled the steady-state maturation efficiency of DeltaF508 CFTR (approx. 40% of total CFTR was mature protein) compared with expression in the presence of a single compound. The additive effect of the correctors on DeltaF508 CFTR maturation suggests that they directly interact at different sites of the protein.

摘要

囊性纤维化(CF)最常见的病因是囊性纤维化跨膜传导调节因子(CFTR)氯离子通道中苯丙氨酸(508)缺失(ΔF508)。ΔF508 CFTR的一个主要问题是该蛋白在折叠过程中存在缺陷,以至于很少有成熟蛋白被转运到细胞表面。在被称为校正剂或药理伴侣的小分子存在的情况下表达ΔF508 CFTR,可以增加成熟蛋白的水平。不幸的是,校正剂诱导的ΔF508 CFTR成熟效率可能太低,没有治疗价值,因此需要提高成熟效率的方法。我们推测,在与不同位点结合的多种校正剂存在的情况下表达ΔF508 CFTR,可能对成熟有累加效应。为支持这一机制,我们发现,在与两个结合不同位点的化合物(罗丹明B和Hoechst 33342)存在的情况下,P-糖蛋白(CFTR的姊妹蛋白)加工突变体的表达对成熟有累加效应。因此,我们测试了在三种不同类型校正剂分子组合存在的情况下表达ΔF508 CFTR是否会提高其成熟效率。结果发现,与在单一化合物存在的情况下表达相比,喹唑啉VRT-325与噻唑corr-2b或双氨基甲基噻唑corr-4a组合可使ΔF508 CFTR的稳态成熟效率提高一倍(约40% 的总CFTR为成熟蛋白)。校正剂对ΔF508 CFTR成熟的累加效应表明它们在该蛋白的不同位点直接相互作用。

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