Cescau S, Cwerman H, Létoffé S, Delepelaire P, Wandersman C, Biville F
Unité des Membranes Bactériennes, Département de Microiologie, URA CNRS 2172 Institut Pasteur, 25, rue du Dr. Roux, 75024 Paris Cedex 15, France.
Biometals. 2007 Jun;20(3-4):603-13. doi: 10.1007/s10534-006-9050-y. Epub 2007 Feb 1.
Bacterial hemophores are secreted to the extracellular medium, where they scavenge heme from various hemoproteins due to their higher affinity for this compound, and return it to their specific outer membrane receptor. HasR, the outer membrane receptor of the HasA hemophore, assumes multiple functions which require various energy levels. Binding of heme and, of heme-free or heme-loaded hemophores is energy-independent. Heme transfer from the holo-hemophore to the outer membrane receptor is also energy-independent. In contrast, heme transport and hemophore release require basal or high levels of TonB and proton motive force, respectively. In addition, HasR is a component of a signaling cascade, regulating expression of the has operon via specific sigma and anti-sigma factors encoded by genes clustered at the has operon. The signal is the heme landing on HasR in the presence of the hemophore in its apo form. The has system is the only system thus far characterized in which the anti-sigma factor is submitted to the same signaling cascade as the target operon. Specific autoregulation of the has system, combined with negative regulation by the Fur protein, permits bacterial adaptation to the available iron source. In the presence of a heme-loaded hemophore, inactive anti-sigma factor is accumulated and can be activated as soon as the heme source dries up. Hence, the has system, instead of being submitted to amplification like other systems regulated by sigma anti-sigma factors, functions by pulses triggered by heme availability.
细菌血色素结合蛋白被分泌到细胞外培养基中,在那里它们由于对这种化合物具有更高的亲和力,从各种血红素蛋白中清除血红素,并将其返还给它们特定的外膜受体。HasA血色素结合蛋白的外膜受体HasR具有多种需要不同能量水平的功能。血红素以及无血红素或负载血红素的血色素结合蛋白的结合不依赖能量。全血色素结合蛋白中的血红素向外膜受体的转移也不依赖能量。相比之下,血红素运输和血色素结合蛋白释放分别需要基础水平或高水平的TonB和质子动力。此外,HasR是信号级联反应的一个组成部分,通过由位于has操纵子上的基因编码的特定sigma和抗sigma因子来调节has操纵子的表达。信号是在脱辅基形式的血色素结合蛋白存在下血红素落在HasR上。has系统是迄今为止唯一被表征的系统,其中抗sigma因子与靶操纵子受相同的信号级联反应调控。has系统的特异性自动调节,与Fur蛋白的负调节相结合,使细菌能够适应可用的铁源。在存在负载血红素的血色素结合蛋白的情况下,无活性的抗sigma因子会积累,一旦血红素源枯竭就会被激活。因此,has系统不像其他由sigma-抗sigma因子调节的系统那样进行放大,而是通过血红素可用性触发的脉冲起作用。