Larson Marilynn A, Bressani Rafael, Sayood Khalid, Corn Jacob E, Berger James M, Griep Mark A, Hinrichs Steven H
Department of Microbiology and Pathology, University of Nebraska Medical Center, Omaha, NE 68198-6495, USA.
Nucleic Acids Res. 2008 Sep;36(16):5260-9. doi: 10.1093/nar/gkn461. Epub 2008 Aug 6.
The placement of the extreme thermophile Aquifex aeolicus in the bacterial phylogenetic tree has evoked much controversy. We investigated whether adaptations for growth at high temperatures would alter a key functional component of the replication machinery, specifically DnaG primase. Although the structure of bacterial primases is conserved, the trinucleotide initiation specificity for A. aeolicus was hypothesized to differ from other microbes as an adaptation to a geothermal milieu. To determine the full range of A. aeolicus primase activity, two oligonucleotides were designed that comprised all potential trinucleotide initiation sequences. One of the screening templates supported primer synthesis and the lengths of the resulting primers were used to predict possible initiation trinucleotides. Use of trinucleotide-specific templates demonstrated that the preferred initiation trinucleotide sequence for A. aeolicus primase was 5'-d(CCC)-3'. Two other sequences, 5'-d(GCC)-3' and d(CGC)-3', were also capable of supporting initiation, but to a much lesser degree. None of these trinucleotides were known to be recognition sequences used by other microbial primases. These results suggest that the initiation specificity of A. aeolicus primase may represent an adaptation to a thermophilic environment.
嗜热栖热菌在细菌系统发育树中的位置引发了诸多争议。我们研究了高温生长适应性是否会改变复制机制的关键功能组件,特别是DnaG引发酶。尽管细菌引发酶的结构是保守的,但推测嗜热栖热菌的三核苷酸起始特异性与其他微生物不同,这是对地热环境的一种适应。为了确定嗜热栖热菌引发酶活性的完整范围,设计了两个包含所有潜在三核苷酸起始序列的寡核苷酸。其中一个筛选模板支持引物合成,并将所得引物的长度用于预测可能的起始三核苷酸。使用三核苷酸特异性模板表明,嗜热栖热菌引发酶的首选起始三核苷酸序列是5'-d(CCC)-3'。另外两个序列5'-d(GCC)-3'和d(CGC)-3'也能够支持起始,但程度要小得多。这些三核苷酸均不是其他微生物引发酶所使用的识别序列。这些结果表明,嗜热栖热菌引发酶的起始特异性可能代表了对嗜热环境的一种适应。