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The ultrastructure of mono- and holocentric plant centromeres: an immunological investigation by structured illumination microscopy and scanning electron microscopy

机译:单中心和整中心植物着丝粒的超微结构:通过结构照明显微镜和扫描电子显微镜的免疫学研究

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The spatial distribution of the three centromere-associated proteins alpha-tubulin, CENH3, and phosphorylated histone H2A (at threonine 120, H2AThr120ph) was analysed by indirect immunodetection at monocentric cereal chromosomes and at the holocentric chromosomes of Luzula elegans by super-resolution light microscopy and scanning electron microscopy (SEM). Using structured illumination microscopy (SIM) as the super-resolution technique on squashed specimens and SEM on uncoated isolated specimens, the three-dimensional (3D) distribution of the proteins was visualized at the centromeres. Technical aspects of 3D SEM are explained in detail. We show that CENH3 forms curved "pads" mainly around the lateral centromeric region in the primary constriction of metacentric chromosomes. H2AThr120ph is present in both the primary constriction and in the pericentromere. alpha-tubulin-labeled microtubule bundles attach to CENH3-containing chromatin structures, either in single bundles with a V-shaped attachment to the centromere or in split bundles to bordering pericentromeric flanks. In holocentric L. elegans chromosomes, H2AThr120ph is located predominantly in the centromeric groove of each chromatid as proven by subsequent FIB/FESEM ablation and 3D reconstruction. alpha-tubulin localizes to the edges of the groove. In both holocentric and monocentric chromosomes, no additional intermediate structures between microtubules and the centromere were observed. We established models of the distribution of CENH3, H2AThr120ph and the attachment sites of microtubules for metacentric and holocentric plant chromosomes.
机译:通过间接免疫检测,通过超高分辨率光学显微镜对单中心谷粒染色体和线粒体完整中心染色体上的三种着丝粒相关蛋白α-微管蛋白,CENH3和磷酸化组蛋白H2A(苏氨酸120,H2AThr120ph)的空间分布进行了分析。和扫描电子显微镜(SEM)。使用结构化照明显微镜(SIM)作为压扁样品的超分辨率技术,并使用SEM对未涂覆的分离样品进行超分辨技术,可以在着丝粒上看到蛋白质的三维(3D)分布。详细说明了3D SEM的技术方面。我们显示CENH3主要在亚中心染色体的主要收缩中形成横向着丝粒区域周围的弯曲“垫”。 H2AThr120ph存在于原发性狭窄和着丝粒周围。 α-微管蛋白标记的微管束附着在含CENH3的染色质结构上,既可以是单个束,着丝粒的V形附着,也可以是成束的束缚在着丝粒周围。在全心线虫染色体中,H2AThr120ph主要位于每个染色单体的着丝粒凹槽中,随后的FIB / FESEM消融和3D重建证明了这一点。 α-微管蛋白定位于凹槽的边缘。在全心和单心染色体中,在微管和着丝粒之间均未观察到其他中间结构。我们建立了CENH3,H2AThr120ph的分布模型和亚微管和全微管植物染色体微管的附着位点。

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