Wissinger B, Schuster W, Brennicke A
Institut für Genbiologische Forschung, Berlin, Federal Republic of Germany.
Cell. 1991 May 3;65(3):473-82. doi: 10.1016/0092-8674(91)90465-b.
The complete NADH dehydrogenase subunit 1 (nad1) ORF in Oenothera mitochondria is encoded by five exons. These exons are located in three distant locations of the mitochondrial genome. One genomic region encodes exon a, the second encodes exons b and c, and the third specifies exons d and e. Cis-splicing group II introns separate exons b and c and d and e, while trans-splicing reactions are required to link exons a and b and c and d. The two parts of the group II intron sequences involved in these trans-splicing events can be aligned in domain IV. Exon sequences and the maturase-related ORF in intron d/e are edited by numerous C to U alterations in the mRNA. Two RNA editing events in the trans-splicing intron a/b improve conservation of the secondary structure in the stem of domain VI. RNA editing in intron sequences may thus be required for the trans-splicing reaction.
月见草属线粒体中的完整烟酰胺腺嘌呤二核苷酸脱氢酶亚基1(nad1)开放阅读框由五个外显子编码。这些外显子位于线粒体基因组的三个不同位置。一个基因组区域编码外显子a,第二个编码外显子b和c,第三个指定外显子d和e。顺式剪接的II类内含子将外显子b和c以及d和e分开,而连接外显子a与b以及c与d则需要反式剪接反应。参与这些反式剪接事件的II类内含子序列的两部分可在结构域IV中比对。外显子序列以及内含子d/e中与成熟酶相关的开放阅读框在mRNA中通过众多的C到U的改变进行编辑。反式剪接内含子a/b中的两个RNA编辑事件改善了结构域VI茎中二级结构的保守性。因此,反式剪接反应可能需要内含子序列中的RNA编辑。