Schopfer L M, Salhany J M
Veterans Administration Medical Center, Omaha, Nebraska, USA.
Biochemistry. 1995 Jul 4;34(26):8320-9. doi: 10.1021/bi00026a013.
Stilbenedisulfonates are potent inhibitors of Band 3 mediated anion exchange. They bind tightly to the protein and form a 1-to-1 reversible complex. Those stilbenedisulfonates which contain isothocyanato groups such as DIDS (4,4'-diisothiocyanato-2,2'-stilbenedisulfonate) and H2DIDS (4,4'-diisothiocyanatodihydrostilbene-2,2'-disulfonate) can also react rapidly with lysine residues within the binding pocket to yield an irreversible covalent adduct. The reactive lysine residue is known as lysine-A, and is thought to have an unusually low pKa. In this report, we characterize the kinetics of DIDS adduct formation with respect to the effect of substrate anions, competitive inhibitory anions, and pH on the rate of covalent adduct formation. We investigate the following: (a) whether stilbenedisulfonates bind to or block access of substrate anions to the transport site; (b) whether the rapidity of the covalent reaction of DIDS at neutral pH is due to a low pKa for lysine-A within the binding pocket; and (c) whether once bound, DIDS and H2DIDS isothiocyanato groups are accessible to reagents. For this latter experiment, we have utilized a newly discovered reaction of the DIDS isothiocyanato groups with azide to test for accessibility. Our results show that substrate anions, DIDS, and Band 3 form a ternary complex. Significantly, the binding of large substrate anions, such as iodide, is not weakened by DIDS to any greater extent than is the binding of smaller substrates such as chloride or fluoride. These results are not consistent with a "partial blockade" hypothesis for the relationship between the stilbenedisulfonate and transport sites. Rather, they support an allosteric site-site interaction hypothesis. Our pH dependence results show that the apparent pKa for the DIDS/lysine-A reaction is greater than 9.26. This is consistent with typical lysine pKa values, and indicates that lysine-A does not have an unusually low pKa. Finally, we show that azide can react with the isothiocyanato groups of DIDS and H2DIDS within their Band 3 complexes, indicating that the stilbenedisulfonate binding site is accessible to solute. These results support a view which suggests that the stilbenedisulfonate site is a superficial inhibitory site on Band 3 which inhibits transport by allosteric interactions within the protein, rather than by either direct or partial blockade of the transport site.
芪二磺酸盐是带3介导的阴离子交换的有效抑制剂。它们与该蛋白质紧密结合并形成1:1的可逆复合物。那些含有异硫氰酸酯基团的芪二磺酸盐,如DIDS(4,4'-二异硫氰酸根合-2,2'-芪二磺酸盐)和H2DIDS(4,4'-二异硫氰酸根合二氢芪-2,2'-二磺酸盐),也能与结合口袋内的赖氨酸残基迅速反应,生成不可逆的共价加合物。反应性赖氨酸残基称为赖氨酸-A,据认为其pKa异常低。在本报告中,我们描述了DIDS加合物形成的动力学,涉及底物阴离子、竞争性抑制阴离子和pH对共价加合物形成速率的影响。我们研究以下内容:(a)芪二磺酸盐是否与底物阴离子结合或阻止其进入转运位点;(b)DIDS在中性pH下共价反应的快速性是否归因于结合口袋内赖氨酸-A的低pKa;以及(c)一旦结合,DIDS和H2DIDS的异硫氰酸酯基团是否可被试剂接近。对于后一个实验,我们利用了DIDS异硫氰酸酯基团与叠氮化物的新发现反应来测试可及性。我们的结果表明,底物阴离子DIDS和带3形成三元复合物。值得注意的是,大的底物阴离子(如碘离子)的结合,与小的底物(如氯离子或氟离子)的结合相比,DIDS对其削弱程度并没有更大。这些结果与芪二磺酸盐和转运位点之间关系的“部分阻断”假说是不一致的。相反,它们支持变构位点-位点相互作用假说。我们的pH依赖性结果表明,DIDS/赖氨酸-A反应的表观pKa大于9.26。这与典型的赖氨酸pKa值一致,表明赖氨酸-A没有异常低的pKa。最后,我们表明叠氮化物可以与它们在带3复合物中的DIDS和H2DIDS的异硫氰酸酯基团反应,表明芪二磺酸盐结合位点对溶质是可及的。这些结果支持了一种观点,即芪二磺酸盐位点是带3上的一个表面抑制位点,它通过蛋白质内的变构相互作用抑制转运,而不是通过直接或部分阻断转运位点。