Department of Chemistry, Boston University, 590 Commonwealth Avenue, Boston, Massachusetts 02215, USA.
Biochemistry. 2011 Nov 22;50(46):10159-69. doi: 10.1021/bi201340t. Epub 2011 Oct 27.
The process known as "adaptive response" allows Escherichia coli to respond to small doses of DNA-methylating agents by upregulating the expression of four proteins. While the role of three of these proteins in mitigating DNA damage is well understood, the function of AidB is less clear. Although AidB is a flavoprotein, no catalytic role has been established for the bound cofactor. Here we investigate the possibility that flavin plays a structural role in the assembly of the AidB tetramer. We report the generation and biophysical characterization of deflavinated AidB and of an AidB mutant that has greatly reduced affinity for flavin adenine dinucleotide (FAD). Using fluorescence quenching and analytical ultracentrifugation, we find that apo AidB has a high affinity for FAD, as indicated by an apparent dissociation constant of 402.1 ± 35.1 nM, and that binding of substoichiometric amounts of FAD triggers a transition in the AidB oligomeric state. In particular, deflavinated AidB is dimeric, whereas the addition of FAD yields a tetramer. We further investigate the dimerization and tetramerization interfaces of AidB by determining a 2.8 Å resolution crystal structure in space group P3(2) that contains three intact tetramers in the asymmetric unit. Taken together, our findings provide strong evidence that FAD plays a structural role in the formation of tetrameric AidB.
“适应性反应”过程使大肠杆菌能够通过上调 4 种蛋白质的表达来应对低剂量的 DNA 甲基化剂。虽然这 3 种蛋白质在减轻 DNA 损伤方面的作用已得到充分了解,但 AidB 的功能则不太明确。尽管 AidB 是一种黄素蛋白,但尚未确定结合辅因子的催化作用。在这里,我们研究了黄素在 AidB 四聚体组装中可能具有结构作用的可能性。我们报告了脱黄素 AidB 的产生和生物物理特性,以及一种 AidB 突变体,其对黄素腺嘌呤二核苷酸(FAD)的亲和力大大降低。通过荧光猝灭和分析超速离心,我们发现脱辅基 AidB 对 FAD 具有高亲和力,这表明表观解离常数为 402.1 ± 35.1 nM,并且亚化学计量的 FAD 结合会引发 AidB 寡聚状态的转变。特别是,脱辅基 AidB 是二聚体,而添加 FAD 则产生四聚体。我们通过测定分辨率为 2.8 Å 的晶体结构(空间群为 P3(2))进一步研究了 AidB 的二聚体化和四聚体化界面,该晶体结构在不对称单元中包含 3 个完整的四聚体。总之,我们的发现提供了强有力的证据,表明 FAD 在 AidB 四聚体的形成中具有结构作用。