Chaudhuri A R, Tomita I, Mizuhashi F, Murata K, Ludueña R F
Department of Biochemistry, University of Texas Health Science Center, San Antonio 78284, USA.
J Protein Chem. 1998 Oct;17(7):685-90. doi: 10.1007/BF02780971.
IKP104 is one of a group of tubulin-binding drugs whose interaction with tubulin suggests that it may bind to the protein at or close to the region where vinblastine binds. By itself IKP104 is a potent enhancer of tubulin decay as evidenced by the fact that it induces the exposure of the sulfhydryl groups and hydrophobic areas on tubulin. In this respect, IKP104 differs from vinblastine and other drugs such as phomopsin A, dolastatin 10, rhizoxin, and maytansine which are competitive or noncompetitive inhibitors of vinblastine binding. In contrast, however, in the presence of colchicine, IKP104 behaves differently and strongly stabilizes tubulin, to an extent much greater than does colchicine alone. IKP104 appears to have two classes of binding site on tubulin, differing in affinity; the acceleration of decay appears to be mediated by the low-affinity site (Chaudhuri et al., 1998, J. Protein Chem., in press). We investigated the relationship of the binding of IKP104 and vinblastine. We found that the high-affinity site or sites of IKP104 overlap with or interact with the vinblastine-binding sites, but that the low-affinity site is distinctly different.
IKP104是一组微管蛋白结合药物之一,其与微管蛋白的相互作用表明它可能在长春碱结合区域或其附近与该蛋白结合。IKP104本身就是微管蛋白降解的强效增强剂,这一事实表明它能诱导微管蛋白上巯基和疏水区域的暴露。在这方面,IKP104不同于长春碱以及其他药物,如腐草霉素A、多拉司他汀10、根霉素和美登素,它们是长春碱结合的竞争性或非竞争性抑制剂。然而,相比之下,在秋水仙碱存在的情况下,IKP104表现不同,它能强烈稳定微管蛋白,其程度远大于单独使用秋水仙碱时。IKP104在微管蛋白上似乎有两类结合位点,亲和力不同;降解加速似乎是由低亲和力位点介导的(Chaudhuri等人,1998年,《蛋白质化学杂志》,即将发表)。我们研究了IKP104与长春碱结合之间的关系。我们发现,IKP104的高亲和力位点与长春碱结合位点重叠或相互作用,但低亲和力位点明显不同。