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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Microtubule self-organisation by reaction-diffusion processes in miniature cell-sized containers and phospholipid vesicles.
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Microtubule self-organisation by reaction-diffusion processes in miniature cell-sized containers and phospholipid vesicles.

机译:微管通过微型细胞大小的容器和磷脂囊泡中的反应扩散过程自组织。

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摘要

Under appropriate conditions, in vitro microtubule preparations self-organise over macroscopic distances by a process of reaction and diffusion. To investigate whether such self-organisation can also occur in objects as small as a cell or an embryo we carried out experiments in miniature containers of cellular dimension. When assembled under self-organising conditions in wells of 120-500 microm, microtubules developed organised structures. Self-organisation is strongly affected by shape, being highly favoured by elongated forms. In wells of more complex shape, geometrical factors may either oppose or strengthen one another and so inhibit or reinforce self-organisation. Microtubules were also assembled within phospholipid vesicles of 2-5 microm diameter. Under self-organising conditions, we observed large shape changes from spheroids to long tubes (50-100 microm) and intertwined coils. We conclude that self-organisation of microtubules by reaction-diffusion processes can occur in containers of cellular dimensions and is capable of strongly deforming the cellular membrane.
机译:在适当的条件下,体外微管制剂通过反应和扩散过程在宏观距离内自组织。为了研究这种自组织是否也可能发生在像细胞或胚胎这样小的物体中,我们在具有细胞尺寸的微型容器中进行了实验。在自组织条件下在120-500微米的孔中组装时,微管会形成有组织的结构。自组织受形状的强烈影响,而细长形式则对其高度支持。在形状较为复杂的井中,几何因素可能相互对立或相互加强,因此抑制或加强了自组织。微管还组装在直径为2-5微米的磷脂囊泡中。在自组织条件下,我们观察到从球状到长管(50-100微米)和缠绕的线圈的形状发生了很大变化。我们得出的结论是,微管通过反应扩散过程的自组织可发生在具有细胞尺寸的容器中,并且能够使细胞膜强烈变形。

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