间期外染色质:30纳米染色质纤维的最后避难所?

IF 2.5 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Chromosoma Pub Date : 2021-09-01 Epub Date: 2021-06-05 DOI:10.1007/s00412-021-00759-8
Peng Xu, Julia Mahamid, Marco Dombrowski, Wolfgang Baumeister, Ada L Olins, Donald E Olins
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引用次数: 4

摘要

“间期外染色质”是指染色质表面靠近间期核包膜。它是在2011年使用一种二价抗核小体抗体(mAb PL2-6)发现的,现在已知是针对核小体酸性斑块的。间期表染色质的分子结构尚不清楚,但被认为是异色的,具有高密度的“暴露”酸性斑块。在20世纪60年代,对固定的、脱水的、切片的和染色的非活性染色质的透射电子显微镜显示了“单位线”,经常在核包膜上组织成平行阵列,被解释为中心到中心距离约30纳米的规则螺旋。在某些细胞类型中也观察到,核膜在一层紧密排列的单位线(ELCS,包膜限制染色质薄片)周围形成一个“三明治”。1974年核小体的发现导致了染色质螺旋模型的修正。但是这些模型变得非常有争议,30纳米原位染色质纤维的存在受到了挑战。低温电子显微镜(Cryo-EM)的发展为原位染色质纤维的结构定义提供了希望。结合对比增强相板和低温电子断层扫描(Cryo-ET),现在可以在“接近原生”的情况下可视化染色质。用Cryo-ET研究ELCS特别有趣。染色质薄片似乎有两层~ 30nm的染色质纤维以纵横交错的方式排列。ELCS的染色质与相邻的间期表染色质是连续的。在大多数细胞中,水合~ 30nm的染色质纤维是相当罕见的,可能局限于核膜的间期外染色质。
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Interphase epichromatin: last refuge for the 30-nm chromatin fiber?

"Interphase epichromatin" describes the surface of chromatin located adjacent to the interphase nuclear envelope. It was discovered in 2011 using a bivalent anti-nucleosome antibody (mAb PL2-6), now known to be directed against the nucleosome acidic patch. The molecular structure of interphase epichromatin is unknown, but is thought to be heterochromatic with a high density of "exposed" acidic patches. In the 1960s, transmission electron microscopy of fixed, dehydrated, sectioned, and stained inactive chromatin revealed "unit threads," frequently organized into parallel arrays at the nuclear envelope, which were interpreted as regular helices with ~ 30-nm center-to-center distance. Also observed in certain cell types, the nuclear envelope forms a "sandwich" around a layer of closely packed unit threads (ELCS, envelope-limited chromatin sheets). Discovery of the nucleosome in 1974 led to revised helical models of chromatin. But these models became very controversial and the existence of in situ 30-nm chromatin fibers has been challenged. Development of cryo-electron microscopy (Cryo-EM) gave hope that in situ chromatin fibers, devoid of artifacts, could be structurally defined. Combining a contrast-enhancing phase plate and cryo-electron tomography (Cryo-ET), it is now possible to visualize chromatin in a "close-to-native" situation. ELCS are particularly interesting to study by Cryo-ET. The chromatin sheet appears to have two layers of ~ 30-nm chromatin fibers arranged in a criss-crossed pattern. The chromatin in ELCS is continuous with adjacent interphase epichromatin. It appears that hydrated ~ 30-nm chromatin fibers are quite rare in most cells, possibly confined to interphase epichromatin at the nuclear envelope.

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来源期刊
Chromosoma
Chromosoma 生物-生化与分子生物学
CiteScore
3.30
自引率
6.20%
发文量
17
审稿时长
1 months
期刊介绍: Chromosoma publishes research and review articles on the functional organization of the eukaryotic cell nucleus, with a particular emphasis on the structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis; the function and dynamics of subnuclear compartments; the nuclear envelope and nucleocytoplasmic interactions, and more. The scope of Chromosoma encompasses genetic, biophysical, molecular and cell biological studies. Average time from receipt of contributions to first decision: 22 days Publishes research and review articles on the functional organization of the eukaryotic cell nucleus Topics include structure and dynamics of chromatin and chromosomes; the expression and replication of genomes; genome organization and evolution; the segregation of genomes during meiosis and mitosis and more Encompasses genetic, biophysical, molecular and cell biological studies.
期刊最新文献
Genome location, evolution and centromeric contribution of satellite DNAs shared between the two closely related species Drosophila serido and D. antonietae (repleta group, buzzatii cluster). The passing of the last oracle: Adelaide Carpenter and Drosophila meiosis. Multifaceted role of CTCF in X-chromosome inactivation. Novel centromeric repetitive DNA elements reveal karyotype dynamics in polyploid sainfoin (Onobrychis viciifolia) CTCF is essential for proper mitotic spindle structure and anaphase segregation.
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