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多尺度成像揭示了原纤维微纤维的层次组织。

Multiscale Imaging Reveals the Hierarchical Organization of Fibrillin Microfibrils.

机构信息

Wellcome Centre for Cell-Matrix Research, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, M13 9PT, UK; Division of Cell-Matrix Biology and Regenerative Medicine, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, M13 9PT, UK.

Wellcome Centre for Cell-Matrix Research, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Manchester, M13 9PT, UK.

出版信息

J Mol Biol. 2018 Oct 19;430(21):4142-4155. doi: 10.1016/j.jmb.2018.08.012. Epub 2018 Aug 16.

Abstract

Fibrillin microfibrils are evolutionarily ancient, structurally complex extracellular polymers found in mammalian elastic tissues where they endow elastic properties, sequester growth factors and mediate cell signalling; thus, knowledge of their structure and organization is essential for a more complete understanding of cell function and tissue morphogenesis. By combining multiple imaging techniques, we visualize three levels of hierarchical organization of fibrillin structure ranging from micro-scale fiber bundles in the ciliary zonule to nano-scale individual microfibrils. Serial block-face scanning electron microscopy imaging suggests that bundles of zonule fibers are bound together by circumferential wrapping fibers, which is mirrored on a shorter-length scale where individual zonule fibers are interwoven by smaller fibers. Electron tomography shows that microfibril directionality varies from highly aligned and parallel, connecting to the basement membrane, to a meshwork at the zonule fiber periphery, and microfibrils within the zonule are connected by short cross-bridges, potentially formed by fibrillin-binding proteins. Three-dimensional reconstructions of negative-stain electron microscopy images of purified microfibrils confirm that fibrillin microfibrils have hollow tubular structures with defined bead and interbead regions, similar to tissue microfibrils imaged in our tomograms. These microfibrils are highly symmetrical, with an outer ring and interwoven core in the bead and four linear prongs, each accommodating a fibrillin dimer, in the interbead region. Together these data show how a single molecular building block is organized into different levels of hierarchy from microfibrils to tissue structures spanning nano- to macro-length scales. Furthermore, the application of these combined imaging approaches has wide applicability to other tissue systems.

摘要

纤维连接蛋白微纤维是进化上古老的、结构复杂的细胞外聚合物,存在于哺乳动物弹性组织中,赋予其弹性特性,隔离生长因子并介导细胞信号转导;因此,了解其结构和组织对于更全面地理解细胞功能和组织形态发生至关重要。通过结合多种成像技术,我们可视化了纤维连接蛋白结构的三个层次的组织,从睫状带的微纤维束到纳米级的单个微纤维。连续块面扫描电子显微镜成像表明,纤连蛋白束由环形包裹纤维结合在一起,这在较短的长度尺度上得到了反映,其中单个纤连蛋白束由较小的纤维交织在一起。电子断层摄影术显示,微纤维的方向性从与基膜连接的高度对齐和平行变化到纤连蛋白纤维周围的网状结构,并且纤连蛋白在纤连蛋白束内通过短的交叉桥连接,这些短的交叉桥可能由纤维连接蛋白结合蛋白形成。用负染色电子显微镜对纯化的微纤维进行三维重建,证实了纤维连接蛋白微纤维具有空心管状结构,具有明确的珠状和珠间区,类似于在我们的断层图像中成像的组织微纤维。这些微纤维具有高度的对称性,在珠状区有外环和交织的核心,在珠间区有四个线性叉,每个叉容纳一个纤维连接蛋白二聚体。这些数据共同展示了单个分子构建块如何组织成从微纤维到跨越纳米到宏观长度尺度的组织结构的不同层次。此外,这些组合成像方法的应用具有广泛的适用性,可以应用于其他组织系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17a7/6193142/f0a523570bce/ga1.jpg

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