Lewis R J, Brannigan J A, Offen W A, Smith I, Wilkinson A J
Department of Chemistry, University of York, York, YO10 5DD, UK.
J Mol Biol. 1998 Nov 13;283(5):907-12. doi: 10.1006/jmbi.1998.2163.
Spore formation is an extreme response of some bacteria to adversity. In Bacillus subtilis the proteins of the sin, sporulation inhibition, region form a component of an elaborate molecular circuitry that regulates the commitment to sporulation. SinR is a tetrameric repressor protein that binds to the promoters of genes essential for entry into sporulation and prevents their transcription. This repression is overcome through the activity of SinI, which disrupts the SinR tetramer through the formation of a SinI-SinR heterodimer. The interactions governing this curious quaternary transition are revealed in the crystal structure of the SinI-SinR complex. The most striking, and unexpected, finding is that the tertiary structure of the DNA-binding domain of SinR is identical with that of the corresponding domains of the repressor proteins, CI and Cro, of bacteriophage 434 that regulate lysis/lysogeny. This structural similarity greatly exceeds that between SinR and any bacterial protein or between the 434 repressor proteins and their homologues in the closely related bacteriophage lambda. The close evolutionary relationship implied by the structures of SinR and the 434 repressors provokes both comparison of their functions and a speculative consideration of the intriguing possibility of an evolutionary link between the two adaptive responses, sporulation and prophage induction.
孢子形成是一些细菌应对逆境的极端反应。在枯草芽孢杆菌中,sin(孢子形成抑制)区域的蛋白质构成了一个复杂分子调控网络的一部分,该网络调节孢子形成的进程。SinR是一种四聚体阻遏蛋白,它与进入孢子形成所必需的基因启动子结合,阻止其转录。SinI的活性可克服这种抑制作用,SinI通过形成SinI - SinR异二聚体破坏SinR四聚体。SinI - SinR复合物的晶体结构揭示了控制这种奇特四级转变的相互作用。最显著且出乎意料的发现是,SinR的DNA结合结构域的三级结构与噬菌体434调节裂解/溶原性的阻遏蛋白CI和Cro的相应结构域相同。这种结构相似性大大超过了SinR与任何细菌蛋白之间,以及434阻遏蛋白与其在密切相关的噬菌体λ中的同源物之间的相似性。SinR和434阻遏蛋白的结构所暗示的密切进化关系引发了对它们功能的比较,以及对孢子形成和原噬菌体诱导这两种适应性反应之间进化联系这一有趣可能性的推测性思考。