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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >RETHINKING ANAPHASE - WHERE PAC-MAN FAILS AND WHY A ROLE FOR THE SPINDLE MATRIX IS LIKELY
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RETHINKING ANAPHASE - WHERE PAC-MAN FAILS AND WHY A ROLE FOR THE SPINDLE MATRIX IS LIKELY

机译:重新考虑后相位-PAC人在哪里失败以及为什么对主轴矩阵的作用很可能

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The ''Pac-Man'' model for explaining chromosome movement is based on three main tenets: (i) the force that moves chromosomes is generated at the kinetochore; (ii) disassembly of the microtubules (MTs) of the kinetochore fibre generates poleward movement; and (iii) the energy required for this movement comes from MT disassembly. We show that these tenets are not valid in some and perhaps many situations. Thus, the Pac-Man model is inadequate and misleading as the central basis for explaining chromosomal motion generally. We argue that multiple mechanisms are involved in mitotic function and that a contractile/elastic spindle matrix is likely involved not only in anchoring kinetochore fibres, but also by exerting force on them. This view of the spindle matrix shares some features with the ''tensegrity'' model already formulated as a basis for understanding interphase cell behaviour. [References: 46]
机译:用于解释染色体移动的“吃豆人”模型基于三个主要原则:(i)移动染色体的力是在动粒体内产生的; (ii)线粒体纤维的微管(MTs)拆卸会产生极向运动; (iii)此运动所需的能量来自MT拆卸。我们表明,这些原则在某些甚至许多情况下都是无效的。因此,Pac-Man模型不足以作为一般解释染色体运动的主要依据,并且具有误导性。我们认为有多种机制参与有丝分裂功能,而收缩/弹性纺锤体基质不仅可能参与锚定线粒体纤维的锚固,而且还可能对其施加力。纺锤体矩阵的这种观点与“强度”模型具有某些特征,该模型已被公式化为理解相间细胞行为的基础。 [参考:46]

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