Sir William Dunn School of Pathology, University of Oxford, Oxford OX1 3RE, UK.
Open Biol. 2013 May 1;3(5):130023. doi: 10.1098/rsob.130023.
Faithful transmission of genetic material is essential for the survival of all organisms. Eukaryotic chromosome segregation is driven by the kinetochore that assembles onto centromeric DNA to capture spindle microtubules and govern the movement of chromosomes. Its molecular mechanism has been actively studied in conventional model eukaryotes, such as yeasts, worms, flies and human. However, these organisms are closely related in the evolutionary time scale and it therefore remains unclear whether all eukaryotes use a similar mechanism. The evolutionary origins of the segregation apparatus also remain enigmatic. To gain insights into these questions, it is critical to perform comparative studies. Here, we review our current understanding of the mitotic mechanism in Trypanosoma brucei, an experimentally tractable kinetoplastid parasite that branched early in eukaryotic history. No canonical kinetochore component has been identified, and the design principle of kinetochores might be fundamentally different in kinetoplastids. Furthermore, these organisms do not appear to possess a functional spindle checkpoint that monitors kinetochore-microtubule attachments. With these unique features and the long evolutionary distance from other eukaryotes, understanding the mechanism of chromosome segregation in T. brucei should reveal fundamental requirements for the eukaryotic segregation machinery, and may also provide hints about the origin and evolution of the segregation apparatus.
遗传物质的忠实传递对于所有生物的生存都是至关重要的。真核染色体的分离是由动粒驱动的,动粒组装到着丝粒 DNA 上,以捕获纺锤体微管并控制染色体的运动。其分子机制在传统的模式真核生物(如酵母、线虫、果蝇和人类)中得到了积极研究。然而,这些生物体在进化时间尺度上密切相关,因此尚不清楚所有真核生物是否都使用类似的机制。分离装置的进化起源也仍然是个谜。为了深入了解这些问题,进行比较研究至关重要。在这里,我们回顾了我们目前对布鲁氏锥虫有丝分裂机制的理解,布鲁氏锥虫是一种实验上易于处理的动基体寄生虫,它在真核生物历史的早期分支出来。尚未鉴定出典型的动粒组成部分,而且动粒的设计原则在动基体寄生虫中可能存在根本差异。此外,这些生物体似乎没有功能齐全的纺锤体检查点来监测动粒-微管的附着。鉴于这些独特的特征以及与其他真核生物的长期进化距离,理解布鲁氏锥虫的染色体分离机制应该揭示真核分离机制的基本要求,并且可能还为分离装置的起源和进化提供线索。