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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Vimentin Intermediate Filament Formation: In Vitro Measurement and Mathematical Modeling of the Filament Length Distribution during Assembly
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Vimentin Intermediate Filament Formation: In Vitro Measurement and Mathematical Modeling of the Filament Length Distribution during Assembly

机译:波形蛋白中间丝形成:装配过程中丝长度分布的体外测量和数学建模

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摘要

The salt-induced in vitro assembly of cytoplasmic intermediate Filament (IF) proteins such as vimentin is characterized by a very rapid lateral association of soluble tetrameric subunits into 60-nm-long full-width "unit-length" filaments (ULFs). We have demonstrated for this prototype IF protein that filament elongation occurs by the longitudinal annealing of ULFs into short IFs. These IFs further longitudinally anneal and thus constitute a progressively elongating filament population that over time yields filaments of several mu m in length. Previously, we provided a mathematical model for the kinetics of the assembly process based on the average length distribution of Filaments as determined by time-lapse electron and atomic force microscopy. Thereby, we were able to substantiate the concept that end-to-end-annealing of both ULFs and short filaments is obligatory for the formation of long IFs (Kirmse, R.; Portet, S.; Mucke, N. Aebi, U.; Herrmann, H.; Langowski, J.J. Biol. Client. 2007, 282, 18563-18572). As the next step in understanding the mechanics of IF formation, we have expanded our mathematical model to describe the quantitative aspects of IF assembly by taking into account geometry constraints as well as the diffusion properties of rodlike linear aggregates. Thereby, we have developed it robust model for the time-dependent filament length distribution of IFs under standard conditions.
机译:盐诱导的细胞质中间丝(IF)蛋白(例如波形蛋白)的体外组装的特征是可溶性四聚体亚基非常快速地横向缔合成60 nm长的全宽“单位长度”细丝(ULF)。对于该原型IF蛋白,我们已经证明,通过将ULF纵向退火成短IF而发生了长丝伸长。这些IF进一步进行纵向退火,因此构成了逐渐伸长的长丝种群,随着时间的流逝,会产生几微米长的长丝。以前,我们根据耗材的平均长度分布(由时移电子和原子力显微镜确定)提供了装配过程动力学的数学模型。因此,我们能够证实ULF和短灯丝的端到端退火对于形成长IF必不可少的概念(Kirmse,R .; Portet,S .; Mucke,N.Aebi,U. ; Herrmann,H .; Langowski,JJ Biol。Client。2007,282,18563-18572)。作为理解IF形成机理的下一步,我们已经扩展了数学模型,以通过考虑几何约束以及棒状线性聚集体的扩散特性来描述IF组装的定量方面。因此,我们为标准条件下中频随时间变化的灯丝长度分布开发了鲁棒模型。

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