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校正剂通过促进分子两半部分之间的相互作用来增强DeltaF508囊性纤维化跨膜传导调节因子的成熟。

Correctors enhance maturation of DeltaF508 CFTR by promoting interactions between the two halves of the molecule.

作者信息

Loo Tip W, Bartlett M Claire, Clarke David M

机构信息

Department of Medicine and Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

Biochemistry. 2009 Oct 20;48(41):9882-90. doi: 10.1021/bi9004842.

Abstract

Deletion of Phe508 in cystic fibrosis transmembrane conductance regulator (DeltaF508 CFTR) causes cystic fibrosis. CFTR consists of two homologous halves with each containing a nucleotide-binding domain (NBD) and a transmembrane domain (TMD). DeltaF508 CFTR appears to be trapped in an incompletely folded state. Small molecules (correctors) promote folding of DeltaF508 CFTR with relatively low efficiency. Understanding the mechanism of repair may lead to the development of more effective correctors. Here we tested the effect of correctors and the DeltaF508 mutation on interactions between the halves of CFTR when expressed as separate polypeptides. Glycosylation of C-half CFTR was defective when expressed alone as a mixture of core and unglycosylated proteins was detected. Coexpression of C-half CFTR with either wild-type N-half or DeltaF508/N-half CFTR, however, increased the amount of core-glycosylated protein, but only coexpression with wild-type N-half promoted maturation of C-half CFTR (Endo H resistant). This suggested that the DeltaF508 mutation inhibited some interactions between N-half and C-half CFTRs. Interaction of A52-tagged wild-type N-half or DeltaF508/N-half CFTR with histidine-tagged C-half CFTR was then followed by nickel-chelate chromatography. Coexpression of A52-tagged wild-type N-half or DeltaF508/N-half CFTR with histidine-tagged C-half CFTR resulted in the wild-type N-half CFTR but not DeltaF508/N-half CFTR protein being retained on the column. Coexpression of DeltaF508/N-half and C-half CFTR in the presence correctors VX-325 and corr-4a, however, restored interactions between the two halves. An interaction that was restored was that between NBD1 and TMD2 as the correctors restored cross-linking of mutant DeltaF508/NBD1(V510C)/TMD2(A1067C). Therefore, correctors promote proper interactions between the two halves of CFTR.

摘要

囊性纤维化跨膜传导调节因子(ΔF508 CFTR)中苯丙氨酸508的缺失会导致囊性纤维化。CFTR由两个同源部分组成,每个部分都包含一个核苷酸结合结构域(NBD)和一个跨膜结构域(TMD)。ΔF508 CFTR似乎被困在不完全折叠的状态。小分子(校正剂)促进ΔF508 CFTR折叠的效率相对较低。了解修复机制可能会导致开发出更有效的校正剂。在这里,我们测试了校正剂和ΔF508突变对单独表达为多肽时CFTR两部分之间相互作用的影响。当单独表达时,C端半段CFTR的糖基化存在缺陷,检测到其为核心糖基化和未糖基化蛋白的混合物。然而,将C端半段CFTR与野生型N端或ΔF508/N端CFTR共表达,会增加核心糖基化蛋白的量,但只有与野生型N端共表达才能促进C端半段CFTR的成熟(耐内切糖苷酶H)。这表明ΔF508突变抑制了N端和C端CFTR之间的某些相互作用。然后通过镍螯合色谱法追踪A52标记的野生型N端或ΔF508/N端CFTR与组氨酸标记的C端CFTR之间的相互作用。将A52标记的野生型N端或ΔF508/N端CFTR与组氨酸标记的C端CFTR共表达,导致野生型N端CFTR而非ΔF508/N端CFTR蛋白保留在柱上。然而,在校正剂VX - 325和corr - 4a存在的情况下,将ΔF508/N端和C端CFTR共表达,恢复了两部分之间的相互作用。恢复的一种相互作用是NBD1和TMD2之间的相互作用,因为校正剂恢复了突变体ΔF508/NBD1(V510C)/TMD2(A1067C)的交联。因此,校正剂促进了CFTR两部分之间的正确相互作用。

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