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Centriole structure

机译:重心结构

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Centrioles are among the largest protein-based structures found in most cell types, measuring approximately 250 nm in diameter and approximately 500 nm long in vertebrate cells. Here, we briefly review ultrastructural observations about centrioles and associated structures. At the core of most centrioles is a microtubule scaffold formed from a radial array of nine triplet microtubules. Beyond the microtubule triplets of the centriole, we discuss the critically important cartwheel structure and the more enigmatic luminal density, both found on the inside of the centriole. Finally, we discuss the connectors between centrioles, and the distal and subdistal appendages outside of the microtubule scaffold that reflect centriole age and impart special functions to the centriole. Most of the work we review has been done with electron microscopy or electron tomography of resin-embedded samples, but we also highlight recent work performed with cryoelectron microscopy, cryotomography and subvolume averaging. Significant opportunities remain in the description of centriolar structure, both in mapping of component proteins within the structure and in determining the effect of mutations on components that contribute to the structure and function of the centriole.
机译:质心是大多数细胞类型中发现的最大的基于蛋白质的结构之一,在脊椎动物细胞中直径约为250 nm,长度约为500 nm。在这里,我们简要回顾一下有关中心粒和相关结构的超微结构观察。在大多数中心体的核心是由九个三联体微管的放射状阵列形成的微管支架。除了中心粒的微管三胞胎之外,我们还讨论了至关重要的车轮结构和更神秘的腔密度,两者都在中心粒的内部发现。最后,我们讨论了中心粒与微管支架外部的远端和近端附肢之间的连接器,这些接头反映了中心粒年龄并赋予中心粒特殊功能。我们回顾的大部分工作都是通过电子显微镜或电子断层扫描对树脂包埋的样品进行的,但同时我们也重点介绍了最近用低温电子显微镜,低温断层扫描和平均体积进行的工作。在中心粒结构的描述中,在结构中的成分蛋白作图以及确定突变对成分的影响中都存在着重要的机会,这些成分有助于中心粒的结构和功能。

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