Lisnić Berislav, Svetec Ivan-Kresimir, Stafa Anamarija, Zgaga Zoran
Department of Biochemical Engineering, Faculty of Food Technology and Biotechnology, Laboratory of Biology and Microbial Genetics, Pierottijeva 6, Zagreb, Croatia.
DNA Repair (Amst). 2009 Mar 1;8(3):383-9. doi: 10.1016/j.dnarep.2008.11.017. Epub 2009 Jan 4.
Palindromic and quasi-palindromic sequences are important DNA motifs found in various cis-acting genetic elements, but are also known to provoke different types of genetic alterations. The instability of such motifs is clearly size-related and depends on their potential to adopt secondary structures known as hairpins and cruciforms. Here we studied the influence of palindrome size on recombination between two directly repeated copies of the yeast CYC1 gene leading to the loss of the intervening sequence ("pop-out" recombination). We show that palindromes inserted either within one copy or between the two copies of the CYC1 gene become recombinogenic only when they attain a certain critical size and we estimate this critical size to be about 70 bp. With the longest palindrome used in this study (150 bp) we observed a more than 20-fold increase in the pop-out recombination. In the sae2/com1 mutant the palindrome-stimulated recombination was completely abolished. Suppression of palindrome recombinogenicity may be crucial for the maintenance of genetic stability in organisms containing a significant number of large palindromes in their genomes, like humans.
回文序列和准回文序列是在各种顺式作用遗传元件中发现的重要DNA基序,但也已知会引发不同类型的基因改变。这类基序的不稳定性明显与大小有关,并取决于它们形成发夹和十字形等二级结构的潜力。在这里,我们研究了回文序列大小对酵母CYC1基因两个直接重复拷贝之间重组的影响,这种重组会导致中间序列丢失(“弹出”重组)。我们发现,插入CYC1基因一个拷贝内或两个拷贝之间的回文序列只有在达到一定临界大小时才会具有重组活性,我们估计这个临界大小约为70 bp。使用本研究中最长的回文序列(150 bp)时,我们观察到“弹出”重组增加了20多倍。在sae2/com1突变体中,回文序列刺激的重组完全被消除。对于基因组中含有大量大回文序列的生物体(如人类)来说,抑制回文序列的重组活性可能对维持遗传稳定性至关重要。