Cell and molecular biology of the spindle matrix.

Kristen M Johansen, Jørgen Johansen
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引用次数: 68

Abstract

The concept of a spindle matrix has long been proposed to account for incompletely understood features of microtubule spindle dynamics and force production during mitosis. In its simplest formulation, the spindle matrix is hypothesized to provide a stationary or elastic molecular matrix that can provide a substrate for motor molecules to interact with during microtubule sliding and which can stabilize the spindle during force production. Although this is an attractive concept with the potential to greatly simplify current models of microtubule spindle behavior, definitive evidence for the molecular nature of a spindle matrix or for its direct role in microtubule spindle function has been lagging. However, as reviewed here multiple studies spanning the evolutionary spectrum from lower eukaryotes to vertebrates have provided new and intriguing evidence that a spindle matrix may be a general feature of mitosis.

纺锤体基质的细胞和分子生物学。
主轴矩阵的概念早已被提出,以解释微管主轴动力学和有丝分裂过程中力产生的不完全理解的特征。在其最简单的公式中,主轴矩阵被假设为提供静止或弹性的分子矩阵,可以为微管滑动过程中电机分子提供相互作用的基板,并且可以在力产生过程中稳定主轴。虽然这是一个有吸引力的概念,有可能大大简化当前的微管纺锤体行为模型,但关于纺锤体基质的分子性质或其在微管纺锤体功能中的直接作用的明确证据一直滞后。然而,正如本文所回顾的,从低等真核生物到脊椎动物的进化谱上的多项研究提供了新的和有趣的证据,证明纺锤体基质可能是有丝分裂的一般特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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