【24h】

Pericentriolar material structure and dynamics

机译:周生材料的结构和动力学

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A centrosome consists of two barrel-shaped centrioles embedded in a matrix of proteins known as the pericentriolar material (PCM). The PCM serves as a platform for protein complexes that regulate organelle trafficking, protein degradation and spindle assembly. Perhaps most important for cell division, the PCM concentrates tubulin and serves as the primary organizing centre for microtubules in metazoan somatic cells. Thus, similar to other welldescribed organelles, such as the nucleus and mitochondria, the cell has compartmentalized a multitude of vital biochemical reactions in the PCM. However, unlike these other organelles, the PCM is not membrane bound, but rather a dynamic collection of protein complexes and nucleic acids that constitute the organelle's interior and determine its boundary. Howis the complex biochemical machinery necessary for the myriad centrosome functions concentrated and maintained in the PCM? Recent advances in proteomics and RNAi screening have unveiled most of the key PCM components and hinted at their molecular interactions (table 1). Now we must understand how the interactions between these molecules contribute to the mesoscale organization and the assembly of the centrosome. Among outstanding questions are the intrinsic mechanisms that determine PCM shape and size, and how it functions as a biochemical reaction hub.
机译:一个中心体由两个桶状中心体组成,这些中心体被包埋在称为基质中体材料(PCM)的蛋白质基质中。 PCM作为蛋白质复合物的平台,可调节细胞器的运输,蛋白质降解和纺锤体组装。 PCM对于细胞分裂而言可能是最重要的,它可以浓缩微管蛋白,并作为后生体细胞中微管的主要组织中心。因此,类似于其他良好描述的细胞器,例如细胞核和线粒体,该细胞在PCM中分隔了许多重要的生化反应。但是,与这些其他细胞器不同,PCM不是膜结合的,而是构成细胞器内部并确定其边界的蛋白质复合物和核酸的动态集合。 PCM中无数种中心体功能所必需的复杂生化机制如何集中并保持在PCM中?蛋白质组学和RNAi筛选的最新进展揭示了大多数关键PCM成分,并暗示了它们的分子相互作用(表1)。现在我们必须了解这些分子之间的相互作用如何促进中尺度组织和中心体的组装。悬而未决的问题包括决定PCM形状和大小的内在机制,以及它如何充当生化反应中心。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号