Hamel E, Lin C M
Proc Natl Acad Sci U S A. 1981 Jun;78(6):3368-72. doi: 10.1073/pnas.78.6.3368.
Interactions of tubulin with a number of guanine nucleotides modified at the 2' and 3' ribose hydroxyls were examined. Deoxy analogs of GTP were equal or superior to GTP in supporting tubulin polymerization, but analogs bearing either methyl or phosphate groups on the hydroxyls had significantly reduced ability to support polymerization. These substituted GTP analogs were hydrolyzed at the 5'-gamma-phosphate position, although less rapidly than GTP, at rates exceeding those of polymerization. GTP hydrolysis, however, was closely coupled to polymerization. Moreover, the partially active GTP analogs were not effective inhibitors of GTP-dependent polymerization. These data indicate that the substituted GTP analogs have reduced affinity for tubulin at the exchangeable site because of steric factors. No deoxy or substituted GDP analog was as effective as GDP itself in inhibiting GTP-supported tubulin polymerization. Furthermore, there was no apparent relationship between the ability of nucleoside 5'-triphosphates to support polymerization and that of nucleoside 5'-diphosphates to inhibit the reaction. These findings suggest that GTP and GDP may actually bind to different, mutually exclusive sites rather than to a single exchangeable site.
研究了微管蛋白与一些在2'和3'核糖羟基处修饰的鸟嘌呤核苷酸的相互作用。GTP的脱氧类似物在支持微管蛋白聚合方面与GTP相当或更优,但在羟基上带有甲基或磷酸基团的类似物支持聚合的能力显著降低。这些取代的GTP类似物在5'-γ-磷酸位置发生水解,尽管水解速度比GTP慢,但超过了聚合反应的速度。然而,GTP水解与聚合反应紧密偶联。此外,部分活性的GTP类似物不是GTP依赖性聚合反应的有效抑制剂。这些数据表明,由于空间因素,取代的GTP类似物在可交换位点对微管蛋白的亲和力降低。没有脱氧或取代的GDP类似物在抑制GTP支持的微管蛋白聚合方面像GDP本身那样有效。此外,核苷5'-三磷酸支持聚合反应的能力与核苷5'-二磷酸抑制该反应的能力之间没有明显关系。这些发现表明,GTP和GDP实际上可能结合到不同的、相互排斥的位点,而不是单个可交换位点。