Orr Jamie N, Waugh Robbie, Colas Isabelle
Cell and Molecular Sciences, The James Hutton Institute, Dundee, United Kingdom.
School of Life Sciences, University of Dundee, Dundee, United Kingdom.
Front Plant Sci. 2021 Apr 7;12:667314. doi: 10.3389/fpls.2021.667314. eCollection 2021.
Meiosis is a specialized cell division which is essential to sexual reproduction. The success of this highly ordered process involves the timely activation, interaction, movement, and removal of many proteins. Ubiquitination is an extraordinarily diverse post-translational modification with a regulatory role in almost all cellular processes. During meiosis, ubiquitin localizes to chromatin and the expression of genes related to ubiquitination appears to be enhanced. This may be due to extensive protein turnover mediated by proteasomal degradation. However, degradation is not the only substrate fate conferred by ubiquitination which may also mediate, for example, the activation of key transcription factors. In plant meiosis, the specific roles of several components of the ubiquitination cascade-particularly SCF complex proteins, the APC/C, and HEI10-have been partially characterized indicating diverse roles in chromosome segregation, recombination, and synapsis. Nonetheless, these components remain comparatively poorly understood to their counterparts in other processes and in other eukaryotes. In this review, we present an overview of our understanding of the role of ubiquitination in plant meiosis, highlighting recent advances, remaining challenges, and high throughput methods which may be used to overcome them.
减数分裂是一种特殊的细胞分裂,对有性生殖至关重要。这个高度有序的过程的成功涉及许多蛋白质的及时激活、相互作用、移动和去除。泛素化是一种极其多样的翻译后修饰,在几乎所有细胞过程中都具有调节作用。在减数分裂期间,泛素定位于染色质,并且与泛素化相关的基因的表达似乎增强。这可能是由于蛋白酶体降解介导的广泛的蛋白质周转。然而,降解并不是泛素化赋予的唯一底物命运,例如,泛素化还可能介导关键转录因子的激活。在植物减数分裂中,泛素化级联的几个组分——特别是SCF复合蛋白、后期促进复合物/细胞周期体(APC/C)和HEI10——的具体作用已得到部分表征,表明它们在染色体分离、重组和联会中具有多种作用。尽管如此,与其他过程和其他真核生物中的对应物相比,这些组分仍然了解得相对较少。在这篇综述中,我们概述了我们对泛素化在植物减数分裂中的作用的理解,强调了最近的进展、仍然存在的挑战以及可用于克服这些挑战的高通量方法。