Bolaños-Villegas Pablo, De Kuntal, Pradillo Mónica, Liu Desheng, Makaroff Christopher A
Laboratory of Molecular and Cell Biology, Fabio Baudrit Agricultural Research Station, University of Costa RicaAlajuela, Costa Rica.
Department of Radiation Oncology, James Cancer Hospital and Comprehensive Cancer Center, The Ohio State University Wexner School of Medicine, ColumbusOH, United States.
Front Plant Sci. 2017 May 23;8:846. doi: 10.3389/fpls.2017.00846. eCollection 2017.
In eukaryotic organisms, the correct regulation of sister chromatid cohesion, whereby sister chromatids are paired and held together, is essential for accurate segregation of the sister chromatids and homologous chromosomes into daughter cells during mitosis and meiosis, respectively. Sister chromatid cohesion requires a cohesin complex comprised of structural maintenance of chromosome adenosine triphosphatases and accessory proteins that regulate the association of the complex with chromosomes or that are involved in the establishment or release of cohesion. The cohesin complex also plays important roles in the repair of DNA double-strand breaks, regulation of gene expression and chromosome condensation. In this review, we summarize progress in understanding cohesion dynamics in plants, with the aim of uncovering differences at specific stages. We also highlight dissimilarities between plants and other eukaryotes with respect to the key players involved in the achievement of cohesion, pointing out areas that require further study.
在真核生物中,姐妹染色单体黏连的正确调控至关重要,通过这种调控,姐妹染色单体配对并保持在一起,这对于在有丝分裂和减数分裂期间分别将姐妹染色单体和同源染色体准确分离到子细胞中是必不可少的。姐妹染色单体黏连需要一种黏连蛋白复合体,该复合体由染色体三磷酸腺苷酶的结构维持蛋白和辅助蛋白组成,这些辅助蛋白调节该复合体与染色体的结合,或者参与黏连的建立或释放。黏连蛋白复合体在DNA双链断裂修复、基因表达调控和染色体凝聚中也发挥着重要作用。在本综述中,我们总结了在理解植物中黏连动态方面的进展,旨在揭示特定阶段的差异。我们还强调了在实现黏连所涉及的关键因素方面植物与其他真核生物之间的差异,指出了需要进一步研究的领域。