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果蝇间期进程中的大规模染色体运动。

Large-scale chromosomal movements during interphase progression in Drosophila.

作者信息

Csink A K, Henikoff S

机构信息

Howard Hughes Medical Institute, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109-1024, USA.

出版信息

J Cell Biol. 1998 Oct 5;143(1):13-22. doi: 10.1083/jcb.143.1.13.

Abstract

We examined the effect of cell cycle progression on various levels of chromosome organization in Drosophila. Using bromodeoxyuridine incorporation and DNA quantitation in combination with fluorescence in situ hybridization, we detected gross chromosomal movements in diploid interphase nuclei of larvae. At the onset of S-phase, an increased separation was seen between proximal and distal positions of a long chromsome arm. Progression through S-phase disrupted heterochromatic associations that have been correlated with gene silencing. Additionally, we have found that large-scale G1 nuclear architecture is continually dynamic. Nuclei display a Rabl configuration for only approximately 2 h after mitosis, and with further progression of G1-phase can establish heterochromatic interactions between distal and proximal parts of the chromosome arm. We also find evidence that somatic pairing of homologous chromosomes is disrupted during S-phase more rapidly for a euchromatic than for a heterochromatic region. Such interphase chromosome movements suggest a possible mechanism that links gene regulation via nuclear positioning to the cell cycle: delayed maturation of heterochromatin during G1-phase delays establishment of a silent chromatin state.

摘要

我们研究了细胞周期进程对果蝇不同水平染色体组织的影响。通过将溴脱氧尿苷掺入、DNA定量与荧光原位杂交相结合,我们在幼虫的二倍体间期核中检测到了明显的染色体运动。在S期开始时,一条长染色体臂的近端和远端位置之间的距离增大。S期进程破坏了与基因沉默相关的异染色质关联。此外,我们发现G1期的大规模核结构是持续动态的。细胞核在有丝分裂后仅约2小时呈现拉布尔构型,随着G1期的进一步推进,染色体臂的远端和近端部分之间可建立异染色质相互作用。我们还发现证据表明,常染色质区域的同源染色体体细胞配对在S期比异染色质区域更快地被破坏。这种间期染色体运动提示了一种可能的机制,即将通过核定位进行的基因调控与细胞周期联系起来:G1期异染色质成熟延迟会延迟沉默染色质状态的建立。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/492f/2132807/2c6e1f267eb6/JCB9804005.f1.jpg

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