Rezania Vahid, Azarenko Olga, Jordan Mary Ann, Bolterauer Hannes, Ludueña Richard F, Huzil J Torin, Tuszynski Jack A
Department of Oncology, University of Alberta, Edmonton, Alberta, Canada.
Biophys J. 2008 Aug;95(4):1993-2008. doi: 10.1529/biophysj.108.132233. Epub 2008 May 23.
Numerous isotypes of the structural protein tubulin have now been characterized in various organisms and their expression offers a plausible explanation for observed differences affecting microtubule function in vivo. While this is an attractive hypothesis, there are only a handful of studies demonstrating a direct influence of tubulin isotype composition on the dynamic properties of microtubules. Here, we present the results of experimental assays on the assembly of microtubules from bovine brain tubulin using purified isotypes at various controlled relative concentrations. A novel data analysis is developed using recursive maps which are shown to be related to the master equation formalism. We have found striking similarities between the three isotypes of bovine tubulin studied in regard to their dynamic instability properties, except for subtle differences in their catastrophe frequencies. When mixtures of tubulin isotypes are analyzed, their nonlinear concentration dependence is modeled and interpreted in terms of lower affinities of tubulin dimers belonging to the same isotype than those that represent different isotypes indicating hitherto unsuspected influences of tubulin dimers on each other within a microtubule. Finally, we investigate the fluctuations in microtubule assembly and disassembly rates and conclude that the inherent rate variability may signify differences in the guanosine-5'-triphosphate composition of the growing and shortening microtubule tips. It is the main objective of this article to develop a quantitative model of tubulin polymerization for individual isotypes and their mixtures. The possible biological significance of the observed differences is addressed.
目前,在各种生物体中已鉴定出结构蛋白微管蛋白的多种同种型,其表达为体内观察到的影响微管功能的差异提供了合理的解释。虽然这是一个很有吸引力的假设,但只有少数研究表明微管蛋白同种型组成对微管动态特性有直接影响。在此,我们展示了使用各种受控相对浓度的纯化同种型,对来自牛脑微管蛋白的微管组装进行实验测定的结果。我们开发了一种使用递归映射的新颖数据分析方法,该方法被证明与主方程形式有关。我们发现所研究的牛微管蛋白的三种同种型在其动态不稳定性特性方面存在显著相似性,只是它们的灾难频率存在细微差异。当分析微管蛋白同种型的混合物时,我们对其非线性浓度依赖性进行了建模,并根据属于同一种同种型的微管蛋白二聚体比代表不同同种型的微管蛋白二聚体具有更低亲和力来进行解释,这表明微管内微管蛋白二聚体之间存在迄今未被怀疑的相互影响。最后,我们研究了微管组装和解聚速率的波动,并得出结论,固有的速率变异性可能意味着生长和缩短的微管末端鸟苷 - 5'-三磷酸组成的差异。本文的主要目标是为单个同种型及其混合物开发微管蛋白聚合的定量模型。我们还探讨了观察到的差异可能具有的生物学意义。