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微管数量在细胞分裂过程中染色体分离中的作用。

Role of the Number of Microtubules in Chromosome Segregation during Cell Division.

作者信息

Bertalan Zsolt, Budrikis Zoe, La Porta Caterina A M, Zapperi Stefano

机构信息

Institute for Scientific Interchange Foundation, Via Alassio 11/C, 10126 Torino, Italy.

Center for Complexity and Biosystems, Department of Bioscience, University of Milan, via Celoria 26, 20133 Milano, Italy.

出版信息

PLoS One. 2015 Oct 27;10(10):e0141305. doi: 10.1371/journal.pone.0141305. eCollection 2015.

Abstract

Faithful segregation of genetic material during cell division requires alignment of chromosomes between two spindle poles and attachment of their kinetochores to each of the poles. Failure of these complex dynamical processes leads to chromosomal instability (CIN), a characteristic feature of several diseases including cancer. While a multitude of biological factors regulating chromosome congression and bi-orientation have been identified, it is still unclear how they are integrated so that coherent chromosome motion emerges from a large collection of random and deterministic processes. Here we address this issue by a three dimensional computational model of motor-driven chromosome congression and bi-orientation during mitosis. Our model reveals that successful cell division requires control of the total number of microtubules: if this number is too small bi-orientation fails, while if it is too large not all the chromosomes are able to congress. The optimal number of microtubules predicted by our model compares well with early observations in mammalian cell spindles. Our results shed new light on the origin of several pathological conditions related to chromosomal instability.

摘要

细胞分裂过程中遗传物质的忠实分离需要染色体在两个纺锤极之间对齐,并将其动粒附着到每个纺锤极上。这些复杂的动态过程失败会导致染色体不稳定(CIN),这是包括癌症在内的几种疾病的一个特征。虽然已经确定了许多调节染色体汇聚和双定向的生物学因素,但仍不清楚它们是如何整合的,以便从大量随机和确定性过程中产生连贯的染色体运动。在这里,我们通过一个有丝分裂期间由马达驱动的染色体汇聚和双定向的三维计算模型来解决这个问题。我们的模型表明,成功的细胞分裂需要控制微管的总数:如果这个数量太小,双定向就会失败,而如果数量太大,并非所有染色体都能汇聚。我们模型预测的微管最佳数量与哺乳动物细胞纺锤体的早期观察结果相当吻合。我们的结果为与染色体不稳定相关的几种病理状况的起源提供了新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43f2/4624697/49eabe7a0b6e/pone.0141305.g001.jpg

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