Rattner J B, Bazett-Jones D P
Department of Medical Biochemistry, Faculty of Medicine, University of Calgary, Canada.
J Cell Biol. 1989 Apr;108(4):1209-19. doi: 10.1083/jcb.108.4.1209.
The structure of the kinetochore in thin section has been studied in the Indian muntjac by an electron spectroscopic imaging technique. This procedures allows the analysis of the distribution of phosphorus within the layers of the kinetochore. The results indicate that this element is a major component of both the inner and outer plates whereas it is largely absent in the middle plate and fibrous corona. The majority of the phosphorus is localized to a 30-nm fiber(s) that is woven through the layers of the kinetochore. The presence of phosphorus within this fiber, along with its morphological and biochemical features, indicates that it contains DNA. The fiber(s) occupies a major portion of the inner and outer plate where it forms a series of rows. It is rarely observed in the middle layer except where it passes between the inner and outer layers. The absence of structure in the middle plate suggests that it may represent a space rather than a plate that in turn may be related to the function of this region. The distribution of phosphorus within the kinetochore is neither altered by treatment with colcemid nor by the presence of microtubules at the kinetochore. Analysis of conventional micrographs of the kinetochore together with structural information obtained by electron spectroscopic imaging suggests that most microtubules insert and terminate between the rows of kinetochore fibers in the outer plate. However, some microtubules continue through the middle layer and terminate at the lower plate. The insertion of microtubules at different levels of the kinetochore may reflect the existence of functionally distinct microtubule classes. Electron spectroscopic imaging indicates that the microtubules associated with the kinetochore are phosphorylated.
利用电子光谱成像技术,在印度麂中研究了薄切片中动粒的结构。该方法可分析磷在动粒各层中的分布情况。结果表明,该元素是内板和外板的主要成分,而在中间板和纤维冠中基本不存在。大部分磷定位于贯穿动粒各层的30纳米纤维中。该纤维中磷的存在及其形态和生化特征表明其含有DNA。该纤维占据内板和外板的大部分区域,在那里形成一系列排。除了在内层和外层之间穿过的地方,在中间层很少观察到它。中间板缺乏结构表明它可能代表一个空间而非一块板,这反过来可能与该区域的功能有关。动粒内磷的分布既不会因秋水仙酰胺处理而改变,也不会因动粒处微管的存在而改变。对动粒的传统显微照片分析以及通过电子光谱成像获得的结构信息表明,大多数微管插入并终止于外板动粒纤维排之间。然而,一些微管继续穿过中间层并终止于下板。微管在动粒不同水平的插入可能反映了功能上不同的微管类别的存在。电子光谱成像表明,与动粒相关的微管发生了磷酸化。