Perler F B, Comb D G, Jack W E, Moran L S, Qiang B, Kucera R B, Benner J, Slatko B E, Nwankwo D O, Hempstead S K
New England Biolabs, Inc., Beverly, MA 01915.
Proc Natl Acad Sci U S A. 1992 Jun 15;89(12):5577-81. doi: 10.1073/pnas.89.12.5577.
The DNA polymerase gene from the Archaea Thermococcus litoralis has been cloned and expressed in Escherichia coli. It is split by two intervening sequences (IVSs) that form one continuous open reading frame with the three polymerase exons. To our knowledge, neither IVS is similar to previously described introns. However, the deduced amino acid sequences of both IVSs are similar to open reading frames present in mobile group I introns. The second IVS (IVS2) encodes an endonuclease, I-Tli I, that cleaves at the exon 2-exon 3 junction after IVS2 has been deleted. IVS2 self-splices in E. coli to yield active polymerase, but processing is abolished if the IVS2 reading frame is disrupted. Silent changes in the DNA sequence at the exon 2-IVS2 junction that maintain the original protein sequence do not inhibit splicing. These data suggest that protein rather than mRNA splicing may be responsible for production of the mature polymerase.
嗜热栖热球菌的DNA聚合酶基因已在大肠杆菌中克隆并表达。它被两个间隔序列(IVS)隔开,这两个间隔序列与三个聚合酶外显子形成一个连续的开放阅读框。据我们所知,这两个IVS均与先前描述的内含子不同。然而,两个IVS的推导氨基酸序列与移动I类内含子中存在的开放阅读框相似。第二个IVS(IVS2)编码一种核酸内切酶I-Tli I,在删除IVS2后,它在外显子2-外显子3交界处切割。IVS2在大肠杆菌中自我剪接产生活性聚合酶,但如果IVS2阅读框被破坏,加工过程就会被消除。在外显子2-IVS2交界处维持原始蛋白质序列的DNA序列中的沉默变化不会抑制剪接。这些数据表明,产生成熟聚合酶的可能是蛋白质剪接而非mRNA剪接。