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首页> 外文期刊>Journal of Molecular Biology >Mutations in desmin's carboxy-terminal 'tail' domain severely modify filament and network mechanics.
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Mutations in desmin's carboxy-terminal 'tail' domain severely modify filament and network mechanics.

机译:desmin的羧基末端“尾部”结构域中的突变会严重改变细丝和网络力学。

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摘要

Inherited mutations in the gene coding for the intermediate filament protein desmin have been demonstrated to cause severe skeletal and cardiac myopathies. Unexpectedly, some of the mutated desmins, in particular those carrying single amino acid alterations in the non-alpha-helical carboxy-terminal domain ("tail"), have been demonstrated to form apparently normal filaments both in vitro and in transfected cells. Thus, it is not clear if filament properties are affected by these mutations at all. For this reason, we performed oscillatory shear experiments with six different desmin "tail" mutants in order to characterize the mesh size of filament networks and their strain stiffening properties. Moreover, we have carried out high-frequency oscillatory squeeze flow measurements to determine the bending stiffness of the respective filaments, characterized by the persistence length l(p). Interestingly, mesh size was not altered for the mutant filament networks, except for the mutant DesR454W, which apparently did not form proper filament networks. Also, the values for bending stiffness were in the same range for both the "tail" mutants (l(p)=1.0-2.0 microm) and the wild-type desmin (l(p)=1.1+/-0.5 microm). However, most investigated desmin mutants exhibited a distinct reduction in strain stiffening compared to wild-type desmin and promoted nonaffine network deformation. Therefore, we conclude that the mutated amino acids affect intrafilamentous architecture and colloidal interactions along the filament in such a way that the response to applied strain is significantly altered. In order to explore the importance of the "tail" domain as such for filament network properties, we employed a "tail"-truncated desmin. Under standard conditions, it formed extended regular filaments, but failed to generate strain stiffening. Hence, these data strongly indicate that the "tail" domain is responsible for attractive filament-filament interactions. Moreover, these types of interactions may also be relevant to the network properties of the desmin cytoskeleton in patient muscle.
机译:已经证明编码中间丝蛋白desmin的基因中的遗传突变会引起严重的骨骼肌和心肌肌病。出乎意料的是,已证明某些突变的结蛋白,特别是那些在非α-螺旋羧基末端结构域(“尾巴”)中携带单个氨基酸改变的结蛋白,在体外和在转染的细胞中均形成明显的正常丝。因此,尚不清楚丝线的性质是否完全受这些突变影响。由于这个原因,我们用六个不同的结蛋白“尾部”突变体进行了振荡剪切实验,以表征细丝网络的网眼尺寸及其应变刚度特性。此外,我们已经进行了高频振荡挤压流动测量,以确定各个细丝的弯曲刚度,其特征在于持久长度l(p)。有趣的是,除突变体DesR454W显然没有形成合适的细丝网络外,突变体细丝网络的网眼大小并未改变。同样,对于“尾巴”突变体(l(p)= 1.0-2.0微米)和野生型结蛋白(l(p)= 1.1 +/- 0.5微米),弯曲刚度的值都在相同范围内。但是,大多数研究的desmin突变体与野生型desmin相比,应变刚度明显降低,并且促进了非仿射网络变形。因此,我们得出的结论是,突变的氨基酸会影响丝内结构和沿丝的胶体相互作用,从而大大改变了对所施加菌株的反应。为了探讨“尾部”域对细丝网络特性的重要性,我们采用了“尾部”截短的结蛋白。在标准条件下,它形成了延长的规则细丝,但未能产生应变变硬。因此,这些数据强烈表明“尾部”结构域负责有吸引力的细丝-细丝相互作用。而且,这些类型的相互作用也可能与患者肌肉中结蛋白细胞骨架的网络特性有关。

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