Université De Paris, Epigenetics and Cell Fate, CNRS UMR7216, Paris, France.
Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Prog Mol Subcell Biol. 2021;60:169-201. doi: 10.1007/978-3-030-74889-0_7.
Centromeres are chromosomal regions that are essential for the faithful transmission of genetic material through each cell division. They represent the chromosomal platform on which assembles a protein complex, the kinetochore, which mediates attachment to the mitotic spindle. In most organisms, centromeres assemble on large arrays of tandem satellite repeats, although their DNA sequences and organization are highly divergent among species. It has become evident that centromeres are not defined by underlying DNA sequences, but are instead epigenetically defined by the deposition of the centromere-specific histone H3 variant, CENP-A. In addition, and although long regarded as silent chromosomal loci, centromeres are in fact transcriptionally competent in most species, yet at low levels in normal somatic cells, but where the resulting transcripts participate in centromere architecture, identity, and function. In this chapter, we discuss the various roles proposed for centromere transcription and their transcripts, and the potential molecular mechanisms involved. We also discuss pathological cases in which unscheduled transcription of centromeric repeats or aberrant accumulation of their transcripts are pathological signatures of chromosomal instability diseases. In sum, tight regulation of centromeric satellite repeats transcription is critical for healthy development and tissue homeostasis, and thus prevents the emergence of disease states.
着丝粒是染色体区域,对于通过每次细胞分裂忠实传递遗传物质至关重要。它们代表着组装蛋白复合物动粒的染色体平台,该复合物介导与有丝分裂纺锤体的附着。在大多数生物体中,着丝粒组装在串联卫星重复序列的大片段上,尽管它们的 DNA 序列和组织在物种之间高度不同。很明显,着丝粒不是由潜在的 DNA 序列定义的,而是由着丝粒特异性组蛋白 H3 变体 CENP-A 的沉积来定义的。此外,尽管长期以来被认为是沉默的染色体位点,但事实上,在大多数物种中,着丝粒是具有转录能力的,但在正常体细胞中的水平较低,但产生的转录本参与着丝粒结构、身份和功能。在本章中,我们讨论了着丝粒转录及其转录本所提出的各种作用,以及涉及的潜在分子机制。我们还讨论了病理情况,其中着丝粒重复序列的非调度转录或其转录本的异常积累是染色体不稳定性疾病的病理特征。总之,着丝粒卫星重复序列转录的紧密调节对于健康的发育和组织稳态至关重要,从而防止疾病状态的出现。