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黑腹果蝇中的同源染色体配对通过多个独立起始进行。

Homologous chromosome pairing in Drosophila melanogaster proceeds through multiple independent initiations.

作者信息

Fung J C, Marshall W F, Dernburg A, Agard D A, Sedat J W

机构信息

Graduate Group in Biophysics, University of California, San Francisco, California 94143-0554, USA.

出版信息

J Cell Biol. 1998 Apr 6;141(1):5-20. doi: 10.1083/jcb.141.1.5.

Abstract

The dynamics by which homologous chromosomes pair is currently unknown. Here, we use fluorescence in situ hybridization in combination with three-dimensional optical microscopy to show that homologous pairing of the somatic chromosome arm 2L in Drosophila occurs by independent initiation of pairing at discrete loci rather than by a processive zippering of sites along the length of chromosome. By evaluating the pairing frequencies of 11 loci on chromosome arm 2L over several timepoints during Drosophila embryonic development, we show that all 11 loci are paired very early in Drosophila development, within 13 h after egg deposition. To elucidate whether such pairing occurs by directed or undirected motion, we analyzed the pairing kinetics of histone loci during nuclear cycle 14. By measuring changes of nuclear length and correlating these changes with progression of time during cycle 14, we were able to express the pairing frequency and distance between homologous loci as a function of time. Comparing the experimentally determined dynamics of pairing to simulations based on previously proposed models of pairing motion, we show that the observed pairing kinetics are most consistent with a constrained random walk model and not consistent with a directed motion model. Thus, we conclude that simple random contacts through diffusion could suffice to allow pairing of homologous sites.

摘要

同源染色体配对的动力学机制目前尚不清楚。在此,我们结合荧光原位杂交与三维光学显微镜技术,以表明果蝇体细胞染色体臂2L的同源配对是通过在离散位点独立起始配对而发生的,而非通过沿着染色体长度的位点逐步拉链式配对过程。通过评估果蝇胚胎发育过程中几个时间点上染色体臂2L上11个位点的配对频率,我们发现所有11个位点在果蝇发育早期,即产卵后13小时内就已配对。为了阐明这种配对是通过定向还是非定向运动发生的,我们分析了核周期14期间组蛋白位点的配对动力学。通过测量核长度的变化并将这些变化与周期14中的时间进程相关联,我们能够将同源位点之间的配对频率和距离表示为时间的函数。将实验确定的配对动力学与基于先前提出的配对运动模型的模拟进行比较,我们发现观察到的配对动力学与受限随机游走模型最为一致,而与定向运动模型不一致。因此,我们得出结论,通过扩散的简单随机接触就足以实现同源位点的配对。

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