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首页> 外文期刊>Scientific reports. >Chromosome Scaffold is a Double-Stranded Assembly of Scaffold Proteins
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Chromosome Scaffold is a Double-Stranded Assembly of Scaffold Proteins

机译:染色体支架是支架蛋白的双链组装。

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Chromosome higher order structure has been an enigma for over a century. The most important structural finding has been the presence of a chromosome scaffold composed of non-histone proteins; so-called scaffold proteins. However, the organization and function of the scaffold are still controversial. Here, we use three dimensional-structured illumination microscopy (3D-SIM) and focused ion beam/scanning electron microscopy (FIB/SEM) to reveal the axial distributions of scaffold proteins in metaphase chromosomes comprising two strands. We also find that scaffold protein can adaptably recover its original localization after chromosome reversion in the presence of cations. This reversion to the original morphology underscores the role of the scaffold for intrinsic structural integrity of chromosomes. We therefore propose a new structural model of the chromosome scaffold that includes twisted double strands, consistent with the physical properties of chromosomal bending flexibility and rigidity. Our model provides new insights into chromosome higher order structure.
机译:染色体的高阶结构已经有一个多世纪的历史了。最重要的结构发现是存在由非组蛋白组成的染色体支架。所谓的支架蛋白。然而,支架的组织和功能仍存在争议。在这里,我们使用三维结构的照明显微镜(3D-SIM)和聚焦离子束/扫描电子显微镜(FIB / SEM)揭示了支架蛋白在包含两条链的中期染色体中的轴向分布。我们还发现,在阳离子存在下,染色体还原后,支架蛋白可以适应性地恢复其原始定位。这种对原始形态的还原强调了支架对于染色体固有结构完整性的作用。因此,我们提出了一种新的染色体支架结构模型,该结构模型包括扭曲的双链,与染色体弯曲柔韧性和刚性的物理特性一致。我们的模型为染色体高阶结构提供了新的见解。

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