Indiana University, Bloomington, Indiana 47405, USA.
J Biol Chem. 2011 Jun 10;286(23):20431-40. doi: 10.1074/jbc.M110.196154. Epub 2011 Apr 4.
The Agrobacterium tumefaciens BlcR is a member of the emerging isocitrate lyase transcription regulators that negatively regulates metabolism of γ-butyrolactone, and its repressing function is relieved by succinate semialdehyde (SSA). Our crystal structure showed that BlcR folded into the DNA- and SSA-binding domains and dimerized via the DNA-binding domains. Mutational analysis identified residues, including Phe(147), that are important for SSA association; BlcR(F147A) existed as tetramer. Two BlcR dimers bound to target DNA and in a cooperative manner, and the distance between the two BlcR-binding sequences in DNA was critical for BlcR-DNA association. Tetrameric BlcR(F147A) retained DNA binding activity, and importantly, this activity was not affected by the distance separating the BlcR-binding sequences in DNA. SSA did not dissociate tetrameric BlcR(F147A) or BlcR(F147A)-DNA. As well as in the SSA-binding site, Phe(147) is located in a structurally flexible loop that may be involved in BlcR oligomerization. We propose that SSA regulates BlcR DNA-binding function via oligomerization.
根癌农杆菌 BlcR 是新兴的异柠檬酸裂解酶转录调控因子家族的成员,其负调控 γ-丁内酯的代谢,其抑制功能被琥珀酸半醛 (SSA) 缓解。我们的晶体结构显示,BlcR 折叠成 DNA 和 SSA 结合域,并通过 DNA 结合域二聚化。突变分析确定了包括苯丙氨酸 (147) 在内的残基对于 SSA 结合很重要;BlcR(F147A) 以四聚体形式存在。两个 BlcR 二聚体结合到靶 DNA 上,并以协同方式结合,DNA 中两个 BlcR 结合序列之间的距离对于 BlcR-DNA 结合至关重要。四聚体 BlcR(F147A)保留了 DNA 结合活性,重要的是,这种活性不受 DNA 中 BlcR 结合序列之间距离的影响。SSA 不会解离四聚体 BlcR(F147A)或 BlcR(F147A)-DNA。与 SSA 结合位点一样,苯丙氨酸 (147) 位于结构上灵活的环中,该环可能参与 BlcR 寡聚化。我们提出 SSA 通过寡聚化调节 BlcR 的 DNA 结合功能。