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有限蛋白水解作为检测ΔF508囊性纤维化跨膜传导调节因子构象成熟停滞的一种手段。

Limited proteolysis as a probe for arrested conformational maturation of delta F508 CFTR.

作者信息

Zhang F, Kartner N, Lukacs G L

机构信息

Division of Respiratory Research, The Hospital for Sick Children, University of Toronto, Ontario, Canada.

出版信息

Nat Struct Biol. 1998 Mar;5(3):180-3. doi: 10.1038/nsb0398-180.

Abstract

Deletion of phenylalanine 508 (delta F508) in the cystic fibrosis transmembrane-conductance regulator (CFTR) prevents the otherwise functional protein from reaching the plasma membrane and is the leading cause of cystic fibrosis. Indirect evidence suggests that the mutant protein, delta F508 CFTR, is misfolded. We address this issue directly, using comparative limited proteolysis of CFTR at steady steady state and during biosynthesis in the native microsomal environment. Distinct protease susceptibilities suggest that cytosolic domain conformations of wild type and delta F508 CFTR differ, not only near F508, but globally. Moreover, delta F508 CFTR proteolytic cleavage patterns were indistinguishable from those of the early folding intermediate of wild type CFTR. The results suggest that the delta F508 mutation causes the accumulation of a form of the protein that resembles an intermediate in the biogenesis of the wild type CFTR, rather than induces the production of non-native variant.

摘要

囊性纤维化跨膜传导调节因子(CFTR)中苯丙氨酸508(ΔF508)的缺失,使原本具有功能的蛋白质无法到达质膜,这是囊性纤维化的主要病因。间接证据表明,突变蛋白ΔF508 CFTR发生了错误折叠。我们在天然微粒体环境中,利用CFTR在稳态和生物合成过程中的比较性有限蛋白酶解,直接解决了这个问题。不同的蛋白酶敏感性表明,野生型和ΔF508 CFTR的胞质结构域构象不仅在F508附近不同,而且在整体上也不同。此外,ΔF508 CFTR的蛋白水解切割模式与野生型CFTR早期折叠中间体的模式无法区分。结果表明,ΔF508突变导致一种类似于野生型CFTR生物合成中间体的蛋白质形式积累,而不是诱导产生非天然变体。

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