Midwest Center for Structural Genomics and Structural Biology Center, Biosciences, Argonne National Laboratory, Argonne, IL 60439, USA.
Proc Natl Acad Sci U S A. 2013 May 7;110(19):E1716-23. doi: 10.1073/pnas.1305971110. Epub 2013 Apr 22.
HetR is an essential regulator of heterocyst development in cyanobacteria. Many mutations in HetR render Anabaena incapable of nitrogen fixation. The protein binds to a DNA palindrome upstream of hetP and other genes. We have determined the crystal structures of HetR complexed with palindromic DNA targets, 21, 23, and 29 bp at 2.50-, 3.00-, and 3.25-Å resolution, respectively. The highest-resolution structure shows fine details of specific protein-DNA interactions. The lower-resolution structures with longer DNA duplexes have similar interaction patterns and show how the flap domains interact with DNA in a sequence nonspecific fashion. Fifteen of 15 protein-DNA contacts predicted on the basis of the structure were confirmed by single amino acid mutations that abolished binding in vitro and complementation in vivo. A striking feature of the structure is the association of glutamate 71 from each subunit of the HetR dimer with three successive cytosines in each arm of the palindromic target, a feature that is conserved among all known heterocyst-forming cyanobacteria sequenced to date.
HetR 是蓝藻异形胞发育的必需调控因子。HetR 中的许多突变使鱼腥藻丧失固氮能力。该蛋白与 hetP 和其他基因上游的 DNA 回文结合。我们已经确定了 HetR 与回文 DNA 靶标(分别为 21、23 和 29 个碱基对)结合的晶体结构,分辨率分别为 2.50、3.00 和 3.25Å。最高分辨率的结构显示了特定蛋白-DNA 相互作用的细微细节。具有更长 DNA 双链的较低分辨率结构具有相似的相互作用模式,并显示了 flap 结构域如何以非序列特异性的方式与 DNA 相互作用。根据结构预测的 15 个蛋白质-DNA 接触中有 15 个被证实,这些突变在体外破坏了结合,在体内互补了结合。结构的一个显著特征是,HetR 二聚体每个亚基的谷氨酸 71 与回文靶标每臂的三个连续胞嘧啶结合,这一特征在迄今为止测序的所有已知异形胞形成蓝藻中都保守。