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本文引用的文献

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Localization microscopy coming of age: from concepts to biological impact.定位显微镜崭露头角:从概念到生物影响。
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2
Nuclear pore scaffold structure analyzed by super-resolution microscopy and particle averaging.利用超分辨率显微镜和粒子平均法分析核孔支架结构。
Science. 2013 Aug 9;341(6146):655-8. doi: 10.1126/science.1240672. Epub 2013 Jul 11.
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rapidSTORM: accurate, fast open-source software for localization microscopy.rapidSTORM:用于定位显微镜的准确、快速的开源软件。
Nat Methods. 2012 Nov;9(11):1040-1. doi: 10.1038/nmeth.2224.
4
The mammalian synaptonemal complex: protein components, assembly and role in meiotic recombination.哺乳动物联会复合体:蛋白成分、组装及在减数分裂重组中的作用。
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Super-resolution imaging visualizes the eightfold symmetry of gp210 proteins around the nuclear pore complex and resolves the central channel with nanometer resolution.超分辨率成像技术可视化了核孔复合体周围 gp210 蛋白的八重对称性,并以纳米分辨率解析了中心通道。
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Direct stochastic optical reconstruction microscopy with standard fluorescent probes.直接随机光学重建显微镜与标准荧光探针。
Nat Protoc. 2011 Jun 16;6(7):991-1009. doi: 10.1038/nprot.2011.336.
7
A novel mouse synaptonemal complex protein is essential for loading of central element proteins, recombination, and fertility.一种新型的小鼠联会复合体蛋白对于中心元件蛋白的加载、重组和育性是必需的。
PLoS Genet. 2011 May;7(5):e1002088. doi: 10.1371/journal.pgen.1002088. Epub 2011 May 26.
8
Real-time computation of subdiffraction-resolution fluorescence images.亚衍射分辨率荧光图像的实时计算。
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Superresolution imaging using single-molecule localization.使用单分子定位的超分辨率成像
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10
Cytological analysis of interference in mouse meiosis.小鼠减数分裂中干扰现象的细胞学分析
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通过具有各向同性分辨率的超分辨率成像阐明联会复合体的组织结构。

Elucidation of synaptonemal complex organization by super-resolution imaging with isotropic resolution.

作者信息

Schücker Katharina, Holm Thorge, Franke Christian, Sauer Markus, Benavente Ricardo

机构信息

Departments of Cell and Developmental Biology and.

Biotechnology and Biophysics, Biocenter, University of Würzburg, 97074 Würzburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2015 Feb 17;112(7):2029-33. doi: 10.1073/pnas.1414814112. Epub 2015 Feb 2.

DOI:10.1073/pnas.1414814112
PMID:25646409
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4343094/
Abstract

Synaptonemal complexes (SCs) are meiosis-specific multiprotein complexes that are essential for synapsis, recombination, and segregation of homologous chromosomes, but the molecular organization of SCs remains unclear. We used immunofluorescence labeling in combination with super-resolution imaging and average position determination to investigate the molecular architecture of SCs. Combination of 2D super-resolution images recorded from different areas of the helical ladder-like structure allowed us to reconstruct the 3D molecular organization of the mammalian SC with isotropic resolution. The central element is composed of two parallel cables at a distance of ∼ 100 nm, which are oriented perpendicular to two parallel cables of the lateral element arranged at a distance of ∼ 220 nm. The two parallel cable elements form twisted helical structures that are connected by transversal filaments by their N and C termini. A single-cell preparation generates sufficient localizations to compile a 3D model of the SC with nanometer precision.

摘要

联会复合体(SCs)是减数分裂特异性的多蛋白复合体,对于同源染色体的联会、重组和分离至关重要,但SCs的分子组织仍不清楚。我们结合免疫荧光标记、超分辨率成像和平均位置测定来研究SCs的分子结构。从螺旋梯状结构的不同区域记录的二维超分辨率图像的组合,使我们能够以各向同性分辨率重建哺乳动物SCs的三维分子组织。中央元件由两条相距约100 nm的平行电缆组成,它们垂直于相距约220 nm排列的侧向元件的两条平行电缆。这两条平行的电缆元件形成扭曲的螺旋结构,它们通过横向细丝在其N和C末端相连。单细胞制备产生足够的定位,以纳米精度编译SCs的三维模型。