Corvaisier Matthieu, Alvarado-Kristensson Maria
Molecular Pathology, Department of Translational Medicine, Lund University, Skåne University Hospital Malmö, SE-20502 Malmö, Sweden.
Cancers (Basel). 2020 Oct 23;12(11):3102. doi: 10.3390/cancers12113102.
The nuclear architecture describes the organization of the various compartments in the nucleus of eukaryotic cells, where a plethora of processes such as nucleocytoplasmic transport, gene expression, and assembly of ribosomal subunits occur in a dynamic manner. During the different phases of the cell cycle, in post-mitotic cells and after oncogenic transformation, rearrangements of the nuclear architecture take place, and, among other things, these alterations result in reorganization of the chromatin and changes in gene expression. A member of the tubulin family, γtubulin, was first identified as part of a multiprotein complex that allows nucleation of microtubules. However, more than a decade ago, γtubulin was also characterized as a nuclear protein that modulates several crucial processes that affect the architecture of the nucleus. This review presents the latest knowledge regarding changes that arise in the nuclear architecture of healthy cells and under pathological conditions and, more specifically, considers the particular involvement of γtubulin in the modulation of the biology of the nuclear compartment.
核结构描述了真核细胞细胞核中各种区室的组织方式,在细胞核中,诸如核质运输、基因表达和核糖体亚基组装等大量过程以动态方式发生。在细胞周期的不同阶段、有丝分裂后细胞中以及致癌转化后,核结构会发生重排,这些变化尤其会导致染色质的重组和基因表达的改变。微管蛋白家族的成员γ微管蛋白最初被鉴定为一种多蛋白复合体的一部分,该复合体可使微管成核。然而,十多年前,γ微管蛋白也被表征为一种核蛋白,它可调节影响细胞核结构的几个关键过程。本综述介绍了关于健康细胞和病理条件下核结构变化的最新知识,更具体地说,探讨了γ微管蛋白在调节核区室生物学中的特殊作用。