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染色质蛋白DUET/MMD1在拟南芥雄配子减数分裂过程中控制减数分裂基因TDM1的表达。

The Chromatin Protein DUET/MMD1 Controls Expression of the Meiotic Gene TDM1 during Male Meiosis in Arabidopsis.

作者信息

Andreuzza Sébastien, Nishal Bindu, Singh Aparna, Siddiqi Imran

机构信息

Centre for Cellular and Molecular Biology (CSIR), Hyderabad, India.

出版信息

PLoS Genet. 2015 Sep 8;11(9):e1005396. doi: 10.1371/journal.pgen.1005396. eCollection 2015 Sep.

Abstract

Meiosis produces haploid cells essential for sexual reproduction. In yeast, entry into meiosis activates transcription factors which trigger a transcriptional cascade that results in sequential co-expression of early, middle and late meiotic genes. However, these factors are not conserved, and the factors and regulatory mechanisms that ensure proper meiotic gene expression in multicellular eukaryotes are poorly understood. Here, we report that DUET/MMD1, a PHD finger protein essential for Arabidopsis male meiosis, functions as a transcriptional regulator in plant meiosis. We find that DUET-PHD binds H3K4me2 in vitro, and show that this interaction is critical for function during meiosis. We also show that DUET is required for proper microtubule organization during meiosis II, independently of its function in meiosis I. Remarkably, DUET protein shows stage-specific expression, confined to diplotene. We identify two genes TDM1 and JAS with critical functions in cell cycle transitions and spindle organization in male meiosis, as DUET targets, with TDM1 being a direct target. Thus, DUET is required to regulate microtubule organization and cell cycle transitions during male meiosis, and functions as a direct transcription activator of the meiotic gene TDM1. Expression profiling showed reduced expression of a subset comprising about 12% of a known set of meiosis preferred genes in the duet mutant. Our results reveal the action of DUET as a transcriptional regulator during male meiosis in plants, and suggest that transcription of meiotic genes is under stagewise control in plants as in yeast.

摘要

减数分裂产生有性生殖所必需的单倍体细胞。在酵母中,进入减数分裂会激活转录因子,这些转录因子引发转录级联反应,导致减数分裂早期、中期和晚期基因的顺序共表达。然而,这些因子并不保守,而且在多细胞真核生物中确保减数分裂基因正确表达的因子和调控机制还知之甚少。在这里,我们报道DUET/MMD1,一种拟南芥雄性减数分裂所必需的PHD指蛋白,在植物减数分裂中作为转录调节因子发挥作用。我们发现DUET-PHD在体外结合H3K4me2,并表明这种相互作用对减数分裂期间的功能至关重要。我们还表明,DUET在减数分裂II期间对于正确的微管组织是必需的,这与其在减数分裂I中的功能无关。值得注意的是,DUET蛋白表现出阶段特异性表达,局限于双线期。我们鉴定出两个在雄性减数分裂的细胞周期转换和纺锤体组织中具有关键功能的基因TDM1和JAS,作为DUET的靶标,其中TDM1是直接靶标。因此,DUET是雄性减数分裂期间调节微管组织和细胞周期转换所必需的,并作为减数分裂基因TDM1的直接转录激活因子发挥作用。表达谱分析显示,在duet突变体中,一组已知的减数分裂优先基因中约12%的子集表达降低。我们的结果揭示了DUET在植物雄性减数分裂期间作为转录调节因子的作用,并表明植物中减数分裂基因的转录如同在酵母中一样受到阶段控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f45/4562639/79c833d40f0a/pgen.1005396.g001.jpg

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