Storm Janet, Modok Szabolcs, O'Mara Megan L, Tieleman D Peter, Kerr Ian D, Callaghan Richard
Nuffield Department of Clinical Laboratory Sciences, John Radcliffe Hospital, University of Oxford, United Kingdom.
Biochemistry. 2008 Mar 25;47(12):3615-24. doi: 10.1021/bi7023089. Epub 2008 Feb 28.
Reduced intracellular drug accumulation due to the activity of the drug efflux pump ABC (B1) is a major mechanism in the resistance of cancer cells to chemotherapy. ABC (B1) is a poly specific transporter, and the molecular mechanism of its complex translocation process remains to be elucidated. To understand the process will require information on the regions involved in drug binding and those that couple this event to nucleotide hydrolysis. The present investigation focuses on the cytosolic region of transmembrane helix 6 (TM6), which has been widely attributed with a central role in the translocation process. A series of ABC (B1) isoforms containing a unique cysteine within TM6 was constructed and the resultant proteins purified and reconstituted. Accessibility of the cysteines to covalent modification by maleimide reagents was measured for the basal, ATP bound and vanadate trapped conformations of each isoform. Residues at the two extremes of the TM6 region examined (amino acids 344 to 360) were considerably more accessible than the central segment, the latter of which also failed to undergo significant conformational changes during the catalytic cycle. Covalent modification of the cytosolic segment of TM6 did, however, attenuate drug stimulation of ATP hydrolysis and demonstrates an important role for this segment in coupling drug binding to ATP hydrolysis during translocation.
由于药物外排泵ABC(B1)的活性导致细胞内药物积累减少是癌细胞对化疗耐药的主要机制。ABC(B1)是一种多特异性转运蛋白,其复杂转运过程的分子机制仍有待阐明。要了解这一过程,需要有关药物结合区域以及将该事件与核苷酸水解偶联的区域的信息。本研究聚焦于跨膜螺旋6(TM6)的胞质区域,该区域在转运过程中被广泛认为起着核心作用。构建了一系列在TM6内含有独特半胱氨酸的ABC(B1)同工型,并对所得蛋白质进行纯化和重组。针对每种同工型的基础、ATP结合和钒酸盐捕获构象,测量了半胱氨酸对马来酰亚胺试剂共价修饰的可及性。在所研究的TM6区域的两个极端位置(氨基酸344至360)的残基比中央部分更容易接近,而中央部分在催化循环中也未发生明显的构象变化。然而,TM6胞质段的共价修饰确实减弱了药物对ATP水解的刺激,并证明该段在转运过程中药物结合与ATP水解的偶联中起重要作用。