Herb A, Higuchi M, Sprengel R, Seeburg P H
Laboratory for Molecular Neuroendocrinololgy, Zentrum für Molekulare Biologie, Heidelberg, Germany.
Proc Natl Acad Sci U S A. 1996 Mar 5;93(5):1875-80. doi: 10.1073/pnas.93.5.1875.
RNA editing by adenosine deamination in brain-expressed pre-mRNAs for glutamate receptor (GluR) subunits alters gene-specified codons for functionally critical positions, such as the channel's Q/R site. We show by transcript analysis of minigenes transiently expressed in PC-12 cells that, in contrast to GluR-B pre-mRNA, where the two editing sites (Q/R and R/G) require base pairing with nearby intronic editing site complementary sequences (ECSs), editing in GluR5 and GluR6 pre-mRNAs recruits an ECS located as far as 1900 nucleotides distal to the Q/R site. The exon-intron duplex structure of the GluR5 and GluR6 pre-mRNAs appears to be a substrate of double-stranded RNA-specific adenosine deaminase. This enzyme when coexpressed in HEK 293 cells preferentially targets the adenosine of the Q/R site and of an unpaired position in the ECS which is highly edited in brain.
大脑中表达的谷氨酸受体(GluR)亚基前体mRNA通过腺苷脱氨基作用进行的RNA编辑,会改变功能关键位置(如通道的Q/R位点)的基因指定密码子。我们通过对在PC-12细胞中瞬时表达的小基因进行转录分析表明,与GluR-B前体mRNA不同,GluR-B前体mRNA的两个编辑位点(Q/R和R/G)需要与附近的内含子编辑位点互补序列(ECS)进行碱基配对,而GluR5和GluR6前体mRNA的编辑会募集一个位于Q/R位点远端达1900个核苷酸处的ECS。GluR5和GluR6前体mRNA的外显子-内含子双链结构似乎是双链RNA特异性腺苷脱氨酶的底物。当这种酶在HEK 293细胞中共表达时,它优先靶向Q/R位点的腺苷以及ECS中一个未配对位置的腺苷,该位置在大脑中高度编辑。