1School of Life Sciences, Pharmacy, and Chemistry, Kingston University, Penrhyn Road, Kingston upon Thames, UK.
Microb Genom. 2016 Aug 25;2(8):e000078. doi: 10.1099/mgen.0.000078. eCollection 2016 Aug.
There are many types of repeated DNA sequences in the genomes of the species of the genus , from homopolymeric tracts to tandem repeats of hundreds of bases. Some of these have roles in the phase-variable expression of genes. When a repeat mediates phase variation, reversible switching between tract lengths occurs, which in the species of the genus most often causes the gene to switch between on and off states through frame shifting of the open reading frame. Changes in repeat tract lengths may also influence the strength of transcription from a promoter. For phenotypes that can be readily observed, such as expression of the surface-expressed Opa proteins or pili, verification that repeats are mediating phase variation is relatively straightforward. For other genes, particularly those where the function has not been identified, gathering evidence of repeat tract changes can be more difficult. Here we present analysis of the repetitive sequences that could mediate phase variation in the strain NCCP11945 genome sequence and compare these results with other gonococcal genome sequences. Evidence is presented for an updated phase-variable gene repertoire in this species, including a class of phase variation that causes amino acid changes at the -terminus of the protein, not previously described in .
该属物种的基因组中有许多类型的重复 DNA 序列,从同聚核苷酸链到数百个碱基的串联重复。其中一些在基因的相变异表达中具有作用。当重复介导相变异时,重复链长度会发生可逆切换,这在该属物种中最常通过开放阅读框的移框导致基因在开启和关闭状态之间切换。重复链长度的变化也可能影响启动子的转录强度。对于可以轻易观察到的表型,例如表面表达的 Opa 蛋白或菌毛的表达,重复序列介导相变异的验证相对简单。对于其他基因,特别是那些功能尚未确定的基因,收集重复序列变化的证据可能更加困难。在这里,我们分析了可能介导 NCCP11945 基因组序列中相变异的重复序列,并将这些结果与其他淋病奈瑟菌基因组序列进行了比较。为该物种提供了更新的相变异基因库的证据,包括一类导致蛋白质 - 末端氨基酸变化的相变异,这在以前的研究中并未描述过。