Schopfer L M, Salhany J M
Veterans Administration Medical Center, Omaha, Nebraska 68105.
Biochemistry. 1992 Dec 22;31(50):12610-7. doi: 10.1021/bi00165a010.
Fluorescence spectroscopy was used to follow the kinetics of covalent binding of DIDS (4,4'-diisothiocyanato-2,2'-stilbenedisulfonate) to isolated band 3 in C12E8. We have discovered a dilution-induced loss in the ability of band 3 monomer to form a covalent adduct with DIDS. The loss in DIDS reactivity with dilution followed a 50:50 biphasic time course despite the use of a homogeneous preparation of band 3 oligomers. The loss in reactivity generally correlated with the association of band 3 dimers and tetramers to higher oligomeric structures. The final aggregated product was capable of binding BADS (4-benzamido-4'-amino-2,2'-stilbenedisulfonate) reversibly, but with an affinity nearly 30-fold lower than that of the starting material. Removal of the cytoplasmic domain of band 3 slowed the conformational interconversion of the integral domain by about 5-fold and inhibited the aggregation process. The conformational interconversion was slowed in the presence of 150 mM chloride but not in 90 mM sulfate. Covalent binding of DIDS inhibited the aggregation of band 3. Addition of 250 microM lipid inhibited both the loss of DIDS reactivity and the protein aggregation process. While several types of lipid offer protection, phosphatidic acid accelerated the decay process by eliminating the biphasicity. We conclude that the conformation of the integral domain of band 3 can be modulated allosterically by the addition of ligands, including various lipids. The results offer direct evidence for cooperative interactions between band 3 subunits during loss of activity, and they show that the cytoplasmic domain participates in the control of this transition.
荧光光谱法用于追踪4,4'-二异硫氰酸根合-2,2'-二苯乙烯二磺酸盐(DIDS)与C12E8中分离的带3蛋白共价结合的动力学过程。我们发现带3单体与DIDS形成共价加合物的能力会因稀释而丧失。尽管使用的是均一的带3寡聚体制剂,但DIDS反应活性随稀释的丧失遵循50:50的双相时间进程。反应活性的丧失通常与带3二聚体和四聚体缔合成更高的寡聚结构相关。最终的聚集产物能够可逆地结合4-苯甲酰胺基-4'-氨基-2,2'-二苯乙烯二磺酸盐(BADS),但其亲和力比起始材料低近30倍。去除带3的细胞质结构域使完整结构域的构象互变减慢约5倍,并抑制了聚集过程。在150 mM氯化物存在下构象互变减慢,但在90 mM硫酸盐存在下则不然。DIDS的共价结合抑制了带3的聚集。添加250 μM脂质可抑制DIDS反应活性的丧失和蛋白质聚集过程。虽然几种类型的脂质都提供保护作用,但磷脂酸通过消除双相性加速了衰减过程。我们得出结论,带3完整结构域的构象可通过添加包括各种脂质在内的配体进行变构调节。这些结果为活性丧失期间带3亚基之间的协同相互作用提供了直接证据,并且表明细胞质结构域参与了这一转变的控制。