Schilstra M J, Martin S R, Bayley P M
Biochem Biophys Res Commun. 1987 Sep 15;147(2):588-95. doi: 10.1016/0006-291x(87)90971-5.
The assembly of pure tubulin dimer has been studied in two buffer systems (containing low and high glycerol/Mg), using a regeneration system protocol to assess the amount of GDP-tubulin in the assembling polymer. For both assembly systems studied, the GDP content is effectively stoichiometric with tubulin throughout assembly. This indicates a high degree of coupling between assembly and GTP-hydrolysis, giving a hydrolysis rate at least 10-fold faster than previously deduced. The steady state GTP hydrolysis rate is quantitatively consistent with this finding. We conclude that the extent of any GTP-tubulin cap is below the detectable limit, both during elongation and at steady state.
在两种缓冲体系(含低甘油/镁和高甘油/镁)中研究了纯微管蛋白二聚体的组装情况,采用再生系统方案评估组装聚合物中GDP-微管蛋白的含量。对于所研究的两种组装体系,在整个组装过程中,GDP含量与微管蛋白有效化学计量。这表明组装与GTP水解之间存在高度耦合,水解速率比先前推断的至少快10倍。稳态GTP水解速率与这一发现定量一致。我们得出结论,在伸长过程和稳态时,任何GTP-微管蛋白帽的程度都低于可检测极限。