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Divergent CFTR orthologs respond differently to the channel inhibitors CFTRinh-172 glibenclamide and GlyH-101

机译:不同的CFTR直系同源物对通道抑制剂CFTRinh-172格列本脲和GlyH-101的反应不同

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摘要

Comparison of diverse orthologs is a powerful tool to study the structure and function of channel proteins. We investigated the response of human, killifish, pig, and shark cystic fibrosis transmembrane conductance regulator (CFTR) to specific inhibitors of the channel: CFTRinh-172, glibenclamide, and GlyH-101. In three systems, including organ perfusion of the shark rectal gland, primary cultures of shark rectal gland tubules, and expression studies of each ortholog in cRNA microinjected Xenopus laevis oocytes, we observed fundamental differences in the sensitivity to inhibition by these channel blockers. In organ perfusion studies, shark CFTR was insensitive to inhibition by CFTRinh-172. This insensitivity was also seen in short-circuit current experiments with cultured rectal gland tubular epithelial cells (maximum inhibition 4 ± 1.3%). In oocyte expression studies, shark CFTR was again insensitive to CFTRinh-172 (maximum inhibition 10.3 ± 2.5% at 25 μM), pig CFTR was insensitive to glibenclamide (maximum inhibition 18.4 ± 4.4% at 250 μM), and all orthologs were sensitive to GlyH-101. The amino acid residues considered responsible by previous site-directed mutagenesis for binding of the three inhibitors are conserved in the four CFTR isoforms studied. These experiments demonstrate a profound difference in the sensitivity of different orthologs of CFTR proteins to inhibition by CFTR blockers that cannot be explained by mutagenesis of single amino acids. We believe that the potency of the inhibitors CFTRinh-172, glibenclamide, and GlyH-101 on the CFTR chloride channel protein is likely dictated by the local environment and the three-dimensional structure of additional residues that form the vestibules, the chloride pore, and regulatory regions of the channel.
机译:比较各种直向同源物是研究通道蛋白的结构和功能的有力工具。我们调查了人类,致盲鱼,猪和鲨鱼囊性纤维化跨膜电导调节剂(CFTR)对通道的特定抑制剂的反应:CFTRinh-172,glibenclamide和GlyH-101。在三个系统中,包括鲨鱼直肠腺的器官灌注,鲨鱼直肠腺管的原代培养以及在cRNA微注射非洲爪蟾卵母细胞中每个直系同源物的表达研究,我们观察到了这些通道阻滞剂对抑制的敏感性的根本差异。在器官灌注研究中,鲨鱼CFTR对CFTRinh-172的抑制作用不敏感。在培养的直肠腺管上皮细胞的短路电流实验中也可以看到这种不敏感性(最大抑制率为4±1.3%)。在卵母细胞表达研究中,鲨鱼CFTR再次对CFTRinh-172不敏感(25μM时最大抑制10.3±2.5%),猪CFTR对格列苯脲不敏感(250μM时最大抑制18.4±4.4%),所有直系同源物对GlyH-101。在先前研究的定点诱变中,负责与三种抑制剂结合的氨基酸残基在所研究的四种CFTR亚型中是保守的。这些实验证明了不同直向同源物对CFTR阻滞剂抑制的敏感性的巨大差异,这不能通过单个氨基酸的诱变来解释。我们认为,CFTR氯化物通道蛋白上的抑制剂CFTRinh-172,格列本脲和GlyH-101的效力可能取决于局部环境以及形成前庭,氯化物孔和通道的其他残基的三维结构。渠道的监管区域。

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