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一个晚期复制的异染色质均匀染色区的间期细胞周期动力学:凝聚/解凝聚及细胞核定位的精确编排。

Interphase cell cycle dynamics of a late-replicating, heterochromatic homogeneously staining region: precise choreography of condensation/decondensation and nuclear positioning.

作者信息

Li G, Sudlow G, Belmont A S

机构信息

Department of Cell and Structural Biology, University of Illinois, Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

J Cell Biol. 1998 Mar 9;140(5):975-89. doi: 10.1083/jcb.140.5.975.

Abstract

Recently we described a new method for in situ localization of specific DNA sequences, based on lac operator/repressor recognition (Robinett, C.C., A. Straight, G. Li, C. Willhelm, G. Sudlow, A. Murray, and A.S. Belmont. 1996. J. Cell Biol. 135:1685-1700). We have applied this methodology to visualize the cell cycle dynamics of an approximately 90 Mbp, late-replicating, heterochromatic homogeneously staining region (HSR) in CHO cells, combining immunostaining with direct in vivo observations. Between anaphase and early G1, the HSR extends approximately twofold to a linear, approximately 0.3-mum-diam chromatid, and then recondenses to a compact mass adjacent to the nuclear envelope. No further changes in HSR conformation or position are seen through mid-S phase. However, HSR DNA replication is preceded by a decondensation and movement of the HSR into the nuclear interior 4-6 h into S phase. During DNA replication the HSR resolves into linear chromatids and then recondenses into a compact mass; this is followed by a third extension of the HSR during G2/ prophase. Surprisingly, compaction of the HSR is extremely high at all stages of interphase. Preliminary ultrastructural analysis of the HSR suggests at least three levels of large-scale chromatin organization above the 30-nm fiber.

摘要

最近,我们描述了一种基于乳糖操纵子/阻遏物识别的特定DNA序列原位定位新方法(Robinett, C.C., A. Straight, G. Li, C. Willhelm, G. Sudlow, A. Murray, and A.S. Belmont. 1996. J. Cell Biol. 135:1685 - 1700)。我们已将此方法应用于可视化CHO细胞中一个约90 Mbp、晚复制、异染色质均匀染色区(HSR)的细胞周期动态,将免疫染色与直接体内观察相结合。在后期和G1早期之间,HSR延伸约两倍,形成一条线性的、直径约0.3μm的染色单体,然后重新浓缩成靠近核膜的紧密团块。在S期中期之前,未观察到HSR构象或位置有进一步变化。然而,在S期开始4 - 6小时后,HSR的DNA复制之前,HSR会发生解聚并移动到核内部。在DNA复制期间,HSR解旋成线性染色单体,然后重新浓缩成紧密团块;随后在G2/前期HSR会再次延伸。令人惊讶的是,在间期的所有阶段,HSR的压缩程度都极高。对HSR的初步超微结构分析表明,在30nm纤维之上至少存在三个层次的大规模染色质组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f015/2132695/40d0a88ee1bd/JCB32957.f1ac.jpg

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