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3D observation of chromosome scaffold structure using a 360 degrees electron tomography sample holder

机译:3D观察染色体支架结构使用360℃电子断层扫描样品架

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The chromosome scaffold is considered to be a key structure of the mitotic chromosome. It plays a vital role in chromosome condensation, shaping the X-shaped structure of the mitotic chromosome, and also provides flexibility for chromosome movement during cell division. However, it remains to be elucidated how the chromosome scaffold organizes the mitotic chromosome and how it supports shaping the structure of the chromosome during metaphase. Here we present a new technique that enables the observation of the chromosome scaffold structure in metaphase chromosomes from any direction, by transferring an isolated chromosome to a 360 degrees rotational holder for electron tomography (ET). The chromosome was stained with immunogold-labeled condensin complex, one of the major chromosome scaffold proteins and then observed in three dimensions using ET. Using the locations of gold nanoparticles to visualize the underlying structure, the tomograms we obtained reveal the patterns of chromosome scaffold organization, which appears to consist of a helical structure that serves to organize chromatin loops into the metaphase chromosome.
机译:染色体支架被认为是有丝分裂染色体的关键结构。它在染色体凝结中起着至关重要的作用,形成有丝分裂染色体的X形结构,并且还为细胞分裂期间提供染色体运动的柔韧性。然而,仍然阐明染色体支架组织有丝分裂染色体以及如何支持在中期期间塑造染色体的结构的方式。在这里,我们提出了一种新的技术,通过将分离的染色体转移到用于电子断层扫描(ET)的360度旋转支架,通过将分离的染色体转移到360度旋转支架(ET)来实现一种新技术。将染色体用免疫结冰标记的夹持络合物染色,主要染色体支架蛋白之一,然后在三个维度中使用ET观察。使用金纳米颗粒的位置来可视化底层结构,我们获得的断层照片揭示了染色体支架组织的模式,该组织似乎由用于将染色质环组织成中期染色体的螺旋结构组成。

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