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弹性测量结果表明,有丝分裂染色体内部存在薄的刚性核心。

Elasticity measurements show the existence of thin rigid cores inside mitotic chromosomes.

作者信息

Houchmandzadeh B, Dimitrov S

机构信息

CNRS, Laboratoire Spectromètrie Physique, BP87, 38402 St. Martin d'Hères Cedex, France.

出版信息

J Cell Biol. 1999 Apr 19;145(2):215-23. doi: 10.1083/jcb.145.2.215.

Abstract

Chromosome condensation is one of the most critical steps during cell division. However, the structure of condensed mitotic chromosomes is poorly understood. In this paper we describe a new approach based on elasticity measurements for studying the structure of in vitro assembled mitotic chromosomes in Xenopus egg extract. The approach is based on a unique combination of measurements of both longitudinal deformability and bending rigidity of whole chromosomes. By using specially designed micropipettes, the chromosome force-extension curve was determined. Analysis of the curvature fluctuation spectrum allowed for the measurement of chromosome bending ridigity. The relationship between the values of these two parameters is very specific: the measured chromosome flexibility was found to be 2,000 times lower than the flexibility calculated from the experimentally determined Young modulus. This requires the chromosome structure to be formed of one or a few thin rigid elastic axes surrounded by a soft envelope. The properties of these axes are well-described by models developed for the elasticity of titin-like molecules. Additionally, the deformability of in vitro assembled chromosomes was found to be very similar to that of native somatic chromosomes, thus demonstrating the existence of an essentially identical structure.

摘要

染色体凝聚是细胞分裂过程中最关键的步骤之一。然而,有丝分裂期凝聚染色体的结构却鲜为人知。在本文中,我们描述了一种基于弹性测量的新方法,用于研究非洲爪蟾卵提取物中体外组装的有丝分裂染色体的结构。该方法基于对整条染色体的纵向可变形性和弯曲刚度的独特测量组合。通过使用专门设计的微量移液器,确定了染色体的力-伸长曲线。对曲率波动谱的分析使得能够测量染色体的弯曲刚度。这两个参数值之间的关系非常特殊:测得的染色体柔韧性比根据实验确定的杨氏模量计算出的柔韧性低2000倍。这就要求染色体结构由一个或几个被软包膜包围的细刚性弹性轴组成。这些轴的特性可以通过为肌联蛋白样分子的弹性开发的模型很好地描述。此外,发现体外组装染色体的可变形性与天然体细胞染色体的非常相似,从而证明了基本相同结构的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9821/2133105/de0613ac3829/JCB9811091.f2ab.jpg

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