Jagura-Burdzy G, Thomas C M
School of Biological Sciences, University of Birmingham, U.K.
J Mol Biol. 1992 Jun 5;225(3):651-60. doi: 10.1016/0022-2836(92)90392-w.
The korABF operon of broad host range IncP plasmid RK2 encodes proteins that coordinate expression of many other operons and that aid plasmid stability by providing at least part of a partitioning apparatus. The kfrA gene lies downstream from this operon and its transcription is repressed by all except one of the proteins encoded by this operon (KorA, KorFI, KorFII and KorB). We report here that transcription from the kfrA promoter is autoregulated by the kfrA gene product. We have purified KfrA, which is an acidic polypeptide of 308 amino acid residues, and show that it is a site-specific DNA-binding protein whose operator overlaps the primary kfrA promoter. Deletion analysis suggests that this activity is critically dependent on the N-terminal section of KfrA, which appears to contain an alpha-helix-beta-turn-alpha-helix motif. Circular dichroism confirmed the structural prediction that KfrA is almost entirely alpha-helical. The position of predicted turns suggests that, while amino acid residues 1 to 80 may form a globular domain of four or five helices, residues 80 to 280 of KfrA may adopt an extended coiled-coil domain containing a heptad repeat segment, which is probably responsible for formation of the multimers detected by crosslinking. The possibility that this unusual structure serves a second function, for example in providing a bridge to host structures required for plasmid partitioning, is discussed.
广宿主范围IncP质粒RK2的korABF操纵子编码的蛋白质可协调许多其他操纵子的表达,并通过提供至少部分分配装置来帮助质粒稳定。kfrA基因位于该操纵子的下游,其转录受到该操纵子编码的除一种蛋白质(KorA、KorFI、KorFII和KorB)之外的所有蛋白质的抑制。我们在此报告,kfrA启动子的转录由kfrA基因产物自动调节。我们纯化了KfrA,它是一种由308个氨基酸残基组成的酸性多肽,并表明它是一种位点特异性DNA结合蛋白,其操纵基因与主要的kfrA启动子重叠。缺失分析表明,这种活性关键取决于KfrA的N端部分,该部分似乎包含一个α-螺旋-β-转角-α-螺旋基序。圆二色性证实了KfrA几乎完全是α-螺旋的结构预测。预测转角的位置表明,虽然氨基酸残基1至80可能形成一个由四到五个螺旋组成的球状结构域,但KfrA的残基80至280可能采用一个包含七肽重复序列的延伸卷曲螺旋结构域,这可能负责形成通过交联检测到的多聚体。本文还讨论了这种不寻常结构是否具有第二种功能的可能性,例如在为质粒分配所需的宿主结构提供桥梁方面。