Matsuda Atsushi, Forney James D
Department of Biochemistry, Purdue University, 175 S. University St., West Lafayette, IN 47907-2063, USA.
Eukaryot Cell. 2006 May;5(5):806-15. doi: 10.1128/EC.5.5.806-815.2006.
Extensive genome-wide remodeling occurs during the formation of the somatic macronuclei from the germ line micronuclei in ciliated protozoa. This process is limited to sexual reproduction and includes DNA amplification, chromosome fragmentation, and the elimination of internal segments of DNA. Our efforts to define the pathways regulating these events revealed a gene encoding a homologue of ubiquitin activating enzyme 2 (UBA2) that is upregulated at the onset of macronuclear development in Paramecium tetraurelia. Uba2 enzymes are known to activate the protein called small ubiquitin-related modifier (SUMO) that is covalently attached to target proteins. Consistent with this relationship, Northern analysis showed increased abundance of SUMO transcripts during sexual reproduction in Paramecium. RNA interference (RNAi) against UBA2 or SUMO during vegetative growth had little effect on cell survival or fission rates. In contrast, RNAi of mating cells resulted in failure to form a functional macronucleus. Despite normal amplification of the genome, excision of internal eliminated sequences was completely blocked. Additional experiments showed that the homologous UBA2 and SUMO genes in Tetrahymena thermophila are also upregulated during conjugation. These results provide evidence for the developmental regulation of the SUMO pathway in ciliates and suggest a key role for the pathway in controlling genome remodeling.
在纤毛原生动物中,从生殖系微核形成体细胞大核的过程中会发生广泛的全基因组重塑。这个过程仅限于有性生殖,包括DNA扩增、染色体片段化以及DNA内部片段的消除。我们确定调控这些事件途径的研究发现了一个基因,它编码泛素激活酶2(UBA2)的同源物,该基因在四膜虫大核发育开始时上调。已知Uba2酶会激活一种名为小泛素相关修饰物(SUMO)的蛋白质,该蛋白质会共价连接到靶蛋白上。与这种关系一致,Northern分析表明,四膜虫有性生殖期间SUMO转录本的丰度增加。在营养生长期间对UBA2或SUMO进行RNA干扰(RNAi)对细胞存活或分裂率几乎没有影响。相比之下,对交配细胞进行RNAi会导致无法形成功能性大核。尽管基因组正常扩增,但内部消除序列的切除被完全阻断。额外的实验表明,嗜热四膜虫中的同源UBA2和SUMO基因在接合过程中也会上调。这些结果为纤毛虫中SUMO途径的发育调控提供了证据,并表明该途径在控制基因组重塑中起关键作用。