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人P-糖蛋白的变构调节涉及模拟催化过渡中间体的构象变化。

Allosteric modulation of the human P-glycoprotein involves conformational changes mimicking catalytic transition intermediates.

作者信息

Ghosh Pratiti, Moitra Karobi, Maki Nazli, Dey Saibal

机构信息

Department of Biochemistry and Molecular Biology, Uniformed Services University of the Health Sciences, F. Edward Hébert School of Medicine, 4301 Jones Bridge Road, Bethesda, MD 20814-4799, USA.

出版信息

Arch Biochem Biophys. 2006 Jun 1;450(1):100-12. doi: 10.1016/j.abb.2006.02.025. Epub 2006 Mar 15.

DOI:10.1016/j.abb.2006.02.025
PMID:16624245
Abstract

The drug transport function of human P-glycoprotein (Pgp, ABCB1) can be inhibited by a number of pharmacological agents collectively referred to as modulators or reversing agents. In this study, we demonstrate that certain thioxanthene-based Pgp modulators with an allosteric mode of action induce a distinct conformational change in the cytosolic domain of Pgp, which alters susceptibility to proteolytic digestion. Both cis and trans-isomers of the Pgp modulator flupentixol confer considerable protection of an 80 kDa Pgp fragment against trypsin digestion, that is recognized by a polyclonal antibody specific for the NH(2)-terminal half to Pgp. The protection by flupentixol is abolished in the Pgp F983A mutant that is impaired in modulation by flupentixols, indicating involvement of the allosteric site in generating the conformational change. A similar protection to an 80 kDa fragment is conferred by ATP, its nonhydrolyzable analog ATPgammaS, and by trapping of ADP-vanadate at the catalytic domain, but not by transport substrate vinblastine or by the competitive modulator cyclosporin A, suggesting different outcomes from modulator interaction at the allosteric site and at the substrate site. In summary, we demonstrate that allosteric interaction of flupentixols with Pgp generates conformational changes that mimic catalytic transition intermediates induced by nucleotide binding and hydrolysis, which may play a crucial role in allosteric inhibition of Pgp-mediated drug transport.

摘要

人类P-糖蛋白(Pgp,ABCB1)的药物转运功能可被多种药理剂抑制,这些药理剂统称为调节剂或逆转剂。在本研究中,我们证明某些具有变构作用模式的噻吨类Pgp调节剂会在Pgp的胞质结构域诱导明显的构象变化,从而改变其对蛋白水解消化的敏感性。Pgp调节剂氟哌噻吨的顺式和反式异构体均能为一个80 kDa的Pgp片段提供相当程度的保护,使其免受胰蛋白酶消化,该片段可被一种针对Pgp氨基末端一半的多克隆抗体识别。在氟哌噻吨调节功能受损的Pgp F983A突变体中,氟哌噻吨的保护作用消失,这表明变构位点参与了构象变化的产生。ATP、其不可水解的类似物ATPγS以及在催化结构域捕获ADP-钒酸盐也能为一个80 kDa的片段提供类似的保护,但转运底物长春碱或竞争性调节剂环孢素A则不能,这表明调节剂在变构位点和底物位点的相互作用产生了不同的结果。总之,我们证明氟哌噻吨与Pgp的变构相互作用产生的构象变化模拟了由核苷酸结合和水解诱导的催化过渡中间体,这可能在变构抑制Pgp介导的药物转运中起关键作用。

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Allosteric modulation of the human P-glycoprotein involves conformational changes mimicking catalytic transition intermediates.人P-糖蛋白的变构调节涉及模拟催化过渡中间体的构象变化。
Arch Biochem Biophys. 2006 Jun 1;450(1):100-12. doi: 10.1016/j.abb.2006.02.025. Epub 2006 Mar 15.
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Allosteric modulation bypasses the requirement for ATP hydrolysis in regenerating low affinity transition state conformation of human P-glycoprotein.变构调节绕过了人P-糖蛋白低亲和力过渡态构象再生过程中对ATP水解的需求。
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Allosteric modulation of human P-glycoprotein. Inhibition of transport by preventing substrate translocation and dissociation.人P-糖蛋白的变构调节。通过阻止底物转运和解离来抑制转运。
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Nucleotide binding, ATP hydrolysis, and mutation of the catalytic carboxylates of human P-glycoprotein cause distinct conformational changes in the transmembrane segments.核苷酸结合、ATP水解以及人P-糖蛋白催化性羧酸盐的突变会导致跨膜区段发生不同的构象变化。
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Biochemical basis of polyvalency as a strategy for enhancing the efficacy of P-glycoprotein (ABCB1) modulators: stipiamide homodimers separated with defined-length spacers reverse drug efflux with greater efficacy.作为增强P-糖蛋白(ABCB1)调节剂功效策略的多价性的生化基础:用特定长度间隔物分隔的斯替酰胺同二聚体以更高的功效逆转药物外排。
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Human P-glycoprotein exhibits reduced affinity for substrates during a catalytic transition state.人P-糖蛋白在催化过渡态期间对底物的亲和力降低。
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