Gao Guanghan, Simpson Larry
Howard Hughes Medical Institute, University of California, 6780 MacDonald Research Laboratories, Los Angeles, California 90095, USA.
J Biol Chem. 2003 Jul 25;278(30):27570-4. doi: 10.1074/jbc.M303317200. Epub 2003 May 14.
It was shown previously that the REL1 mitochondrial RNA ligase in Trypanosoma brucei was a vital gene and disruption affected RNA editing in vivo, whereas the REL2 RNA ligase gene could be down-regulated with no effect on cell growth or on RNA editing. We performed down-regulation of REL1 in procyclic T. brucei (midgut insect forms) by RNA interference and found a 40-50% inhibition of Cyb editing, which has only U-insertions, as well as a similar inhibition of ND7 editing, which has both U-insertions and U-deletions. In addition, both U-insertion and U-deletion in vitro pre-cleaved editing were inhibited to similar extents. We also found little if any effect of REL1 down-regulation on the sedimentation coefficient or abundance of the RNA ligase-containing L-complex (Aphasizhev, R., Aphasizheva, I., Nelson, R. E., Gao, G., Simpson, A. M., Kang, X., Falick, A. M., Sbicego, S., and Simpson, L. (2003) EMBO J. 22, 913-924), suggesting that the inhibition of both insertion and deletion editing was not due to a disruption of the L-complex. Together with the evidence that down-regulation of REL2 has no effect on cell growth or on RNA editing in vivo or in vitro, these data suggest that the REL1 RNA ligase may be active in vivo in both U-insertion and U-deletion editing. The in vivo biological role of REL2 remains obscure.
先前的研究表明,布氏锥虫中的REL1线粒体RNA连接酶是一个至关重要的基因,其缺失会影响体内的RNA编辑,而REL2 RNA连接酶基因的下调对细胞生长或RNA编辑没有影响。我们通过RNA干扰对前循环期布氏锥虫(中肠昆虫形态)中的REL1进行了下调,发现对仅存在U插入的Cyb编辑有40%-50%的抑制作用,对同时存在U插入和U缺失的ND7编辑也有类似程度的抑制作用。此外,体外预切割编辑中的U插入和U缺失均受到相似程度的抑制。我们还发现,REL1下调对含RNA连接酶的L复合物的沉降系数或丰度几乎没有影响(Aphasizhev, R., Aphasizheva, I., Nelson, R. E., Gao, G., Simpson, A. M., Kang, X., Falick, A. M., Sbicego, S., and Simpson, L. (2003) EMBO J. 22, 913-924),这表明插入和缺失编辑的抑制并非由于L复合物的破坏。结合REL2下调在体内或体外对细胞生长或RNA编辑均无影响的证据,这些数据表明REL1 RNA连接酶在体内的U插入和U缺失编辑中可能均具有活性。REL2在体内的生物学作用仍不清楚。