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Analysis of cryo-electron microscopy images does not support the existence of 30-nm chromatin fibers in mitotic chromosomes in situ

机译:冷冻电子显微镜图像分析不支持在有丝分裂染色体中原位存在30 nm染色质纤维

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摘要

Although the formation of 30-nm chromatin fibers is thought to be the most basic event of chromatin compaction, it remains controversial because high-resolution imaging of chromatin in living eukaryotic cells had not been possible until now. Cryo-electron microscopy of vitreous sections is a relatively new technique, which enables direct high-resolution observation of the cell structures in a close-to-native state. We used cryo-electron microscopy and image processing to further investigate the presence of 30-nm chromatin fibers in human mitotic chromosomes. HeLa S3 cells were vitrified by high-pressure freezing, thin-sectioned, and then imaged under the cryo-electron microscope without any further chemical treatment or staining. For an unambiguous interpretation of the images, the effects of the contrast transfer function were computationally corrected. The mitotic chromosomes of the HeLa S3 cells appeared as compact structures with a homogeneous grainy texture, in which there were no visible 30-nm fibers. Power spectra of the chromosome images also gave no indication of 30-nm chromatin folding. These results, together with our observations of the effects of chromosome swelling, strongly suggest that, within the bulk of compact metaphase chromosomes, the nucleosomal fiber does not undergo 30-nm folding, but exists in a highly disordered and interdigitated state, which is, on the local scale, comparable with a polymer melt.
机译:尽管30 nm染色质纤维的形成被认为是染色质紧实的最基本事件,但它仍存在争议,因为迄今为止尚无法在活的真核细胞中对染色质进行高分辨率成像。玻璃体切片的低温电子显微镜技术是一种相对较新的技术,它可以在接近自然状态下直接高分辨率观察细胞结构。我们使用了冷冻电子显微镜和图像处理来进一步研究人有丝分裂染色体中30 nm染色质纤维的存在。将HeLa S3细胞通过高压冷冻进行玻璃化,切成薄片,然后在低温电子显微镜下成像,无需任何进一步的化学处理或染色。为了对图像进行清晰的解释,对对比度传递函数的影响进行了计算校正。 HeLa S3细胞的有丝分裂染色体显示为紧凑的结构,具有均匀的颗粒状纹理,其中没有可见的30 nm纤维。染色体图像的功率谱也未显示30 nm染色质折叠的迹象。这些结果以及我们对染色体肿胀影响的观察结果强烈表明,在紧密中期染色体的大部分中,核小体纤维不会经历30 nm折叠,而是以高度无序和交叉指状的状态存在,即,在局部规模上,可与聚合物熔体媲美。

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