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欧螈精子发生过程中DNA环状结构域组织的分析

Analysis of DNA looped domains organization during Triturus cristatus spermatogenesis.

作者信息

Burlibaşa L

机构信息

University of Bucharest, Genetics Department, Bucharest, Romania.

出版信息

Zygote. 2012 Nov;20(4):339-45. doi: 10.1017/S0967199411000293. Epub 2011 May 18.

Abstract

Chromatin from eukaryotes is organized in DNA loops with sequential attachments to a nucleoskeleton named nuclear matrix. This organization plays major roles in replication, transcription, recombination, DNA repair, chromosome condensation and segregation. During spermatogenesis, chromatin undergoes several dynamic transitions, which are often associated with important changes not only in its physical conformation but even in its compositions and structure. To understand the periodical change in the functional organization of chromatin during spermatogenesis, the higher order organization of chromatin in different testicular cell types (pachytene spermatocytes, round spermatids) and the epididymal sperm of Triturus cristatus have been investigated. The expansion and the contraction of nucleoid DNA were measured with a fluorescence microscope following exposure of nucleoids to increasing concentrations of ethidium bromide (EtBr) (2.5-200 μg/ml) as an intercalating dye to induce DNA-positive supercoils. Nucleoids from all studied cell types exhibited a biphasic change (condensed-relaxed-condensed) in size as a consequence of exposure to increasing concentrations of EtBr, indicating that they contained negatively supercoiled DNA. At higher EtBr concentrations, maximum positive supercoiling occurred in pachytene DNA loops. Our data suggest that pachytene DNA is the most open chromatin conformation in terms of EtBr intercalation.

摘要

真核生物的染色质以DNA环的形式组织,依次附着于名为核基质的核骨架上。这种组织在复制、转录、重组、DNA修复、染色体凝聚和分离中起主要作用。在精子发生过程中,染色质经历了几次动态转变,这不仅常常与其物理构象的重要变化有关,甚至与其组成和结构的变化有关。为了了解精子发生过程中染色质功能组织的周期性变化,研究了不同睾丸细胞类型(粗线期精母细胞、圆形精子细胞)以及有冠蝾螈附睾精子中染色质的高级组织。将核样物暴露于作为嵌入染料的溴化乙锭(EtBr)(2.5 - 200μg/ml)浓度递增的溶液中,以诱导DNA正超螺旋,然后用荧光显微镜测量核样物DNA的膨胀和收缩。由于暴露于浓度递增的EtBr中,所有研究细胞类型的核样物大小均呈现双相变化(凝聚 - 松弛 - 凝聚),表明它们含有负超螺旋DNA。在较高的EtBr浓度下,粗线期DNA环中出现最大正超螺旋。我们的数据表明,就EtBr嵌入而言,粗线期DNA是最开放状态的染色质构象。

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