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原始真核生物鞭毛藻染色体中B型和Z型DNA的定位。

Location of B- and Z-DNA in the chromosomes of a primitive eukaryote dinoflagellate.

作者信息

Soyer-Gobillard M O, Géraud M L, Coulaud D, Barray M, Théveny B, Révet B, Delain E

机构信息

Département de Biologie Cellulaire et Moléculaire, Centre National de la Recherche Scientifique Unité de Recherche Associée 117, Banyuls-sur-mer France.

出版信息

J Cell Biol. 1990 Aug;111(2):293-304. doi: 10.1083/jcb.111.2.293.

Abstract

The usual conformation of DNA is a right-handed double helix (B-DNA). DNA with stretches of alternating purine-pyrimidine (G-C or A-T) can form a left-handed helix (Z-DNA). The transition B----Z, facilitated by the presence of divalent cations, cytosine methylation, or constraints on DNA such as superhelicity may play a role in the regulation of gene expression and/or in DNA compaction (Zarling, D. A., D. J. Arndt-Jovin, M. Robert-Nicoud, L. P. McIntosh, R. Tomae, and T. M. Jovin. 1984. J. Mol. Biol. 176:369-415). Divalent cations are also important in the structure of the quasi-permanently condensed chromosomes of dinoflagellate protists (Herzog, M., and M.-O. Soyer. 1983. Eur. J. Cell Biol. 30:33-41) which also have superhelicity in their DNA. The absence of histones in dinoflagellate chromosomes suggest that the search for Z-DNA sequences might be fruitful and could provide one indication of the physiological role of this particular DNA conformation. We report a complete immunofluorescent and immunogold analysis of the nuclei of the dinoflagellate Prorocentrum micans E. using monoclonal and polyclonal anti-B and anti-Z-DNA antibodies. Positive labeling was obtained with immunofluorescence using squash preparations and cryosections, both of which showed the intranuclear presence of the two DNA conformations. In ultrathin sections of aldehyde-prefixed, osmium-fixed, and epoxy-embedded cells, we have localized B-DNA and Z-DNA either with single or double immunolabeling using IgG labeled with 5- and 7-nm gold particles, respectively. Chromosomal nucleofilaments of dividing or nondividing chromosomes, as seen in ultrathin sections in their arch-shaped configuration, are abundantly labeled with anti-B-DNA antibody. Extrachromosomal anti-B-DNA labeling is also detected on the nucleoplasm that corresponds to DNA loops; we confirm the presence of these loops previously described external to the chromosomes (Soyer, M.-O., and O. K. Haapala. 1974. Chromosoma (Berl.). 47:179-192). B labeling is also visible in the nucleolus organizer region (NOR) and in the fibrillo-granular area (containing transcribing rDNA) of the nucleolus. Z-DNA was localized in limited areas inside the chromosomes, often at the periphery and near the segregation fork of dividing chromosomes. In the nucleolus, Z-DNA is observed only in the NOR area and never in the fibrillo-granular area. For both types of antibody experiments, controls using gold-labeled IgG without primary antibody were negative. A quantitative evaluation of the distribution of the gold-labeled IgG and a parametric test support the validity of these experiments.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

DNA的通常构象是右手双螺旋(B-DNA)。具有交替嘌呤-嘧啶(G-C或A-T)片段的DNA可形成左手螺旋(Z-DNA)。在二价阳离子、胞嘧啶甲基化或DNA超螺旋等限制因素的作用下,B型向Z型的转变可能在基因表达调控和/或DNA压缩过程中发挥作用(Zarling, D. A., D. J. Arndt-Jovin, M. Robert-Nicoud, L. P. McIntosh, R. Tomae, and T. M. Jovin. 1984. J. Mol. Biol. 176:369 - 415)。二价阳离子在甲藻原生生物准永久性浓缩染色体的结构中也很重要(Herzog, M., and M.-O. Soyer. 1983. Eur. J. Cell Biol. 30:33 - 41),其DNA也具有超螺旋结构。甲藻染色体中没有组蛋白,这表明寻找Z-DNA序列可能会有收获,并且可以为这种特殊DNA构象的生理作用提供一个线索。我们报告了使用单克隆和多克隆抗B-DNA和抗Z-DNA抗体对海洋原甲藻细胞核进行的完整免疫荧光和免疫金分析。使用压片标本和冰冻切片进行免疫荧光检测获得了阳性标记,二者均显示两种DNA构象存在于细胞核内。在醛预固定、锇固定和环氧树脂包埋细胞的超薄切片中,我们分别使用标记有5纳米和7纳米金颗粒的IgG通过单重或双重免疫标记定位了B-DNA和Z-DNA。在超薄切片中呈拱形结构的分裂或非分裂染色体的染色体核丝被抗B-DNA抗体大量标记。在对应于DNA环的核质上也检测到了染色体外抗B-DNA标记;我们证实了先前在染色体外部描述的这些环的存在(Soyer, M.-O., and O. K. Haapala. 1974. Chromosoma (Berl.). 47:179 - 192)。B标记在核仁组织区(NOR)和核仁的纤维颗粒区(含有正在转录的rDNA)也可见。Z-DNA定位于染色体内的有限区域,通常位于分裂染色体的周边和分离叉附近。在核仁中,仅在NOR区域观察到Z-DNA,而在纤维颗粒区从未观察到。对于两种抗体实验,使用无一级抗体的金标记IgG作为对照均为阴性。对金标记IgG分布的定量评估和参数检验支持了这些实验的有效性。(摘要截短于400字)

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