Ulmer Tobias S, Soelaiman Sandriyana, Li Shipeng, Klee Claude B, Tang Wei-Jen, Bax Ad
Laboratory of Chemical Physics, NIDDK, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2003 Aug 1;278(31):29261-6. doi: 10.1074/jbc.M302837200. Epub 2003 Apr 29.
Edema factor (EF), a toxin from Bacillus anthracis (anthrax), possesses adenylyl cyclase activity and requires the ubiquitous Ca2+-sensor calmodulin (CaM) for activity. CaM can exist in three major structural states: an apo state with no Ca2+ bound, a two Ca2+ state with its C-terminal domain Ca2+-loaded, and a four Ca2+ state in which the lower Ca2+ affinity N-terminal domain is also ligated. Here, the interaction of EF with the three Ca2+ states of CaM has been examined by NMR spectroscopy and changes in the Ca2+ affinity of CaM in the presence of EF have been determined by flow dialysis. Backbone chemical shift perturbations of CaM show that EF interacts weakly with the N-terminal domain of apoCaM. The C-terminal CaM domain only engages in the interaction upon Ca2+ ligation, rendering the overall interaction much tighter. In the presence of EF, the C-terminal domain binds Ca2+ with higher affinity, but loses binding cooperativity, whereas the N-terminal domain exhibits strongly reduced Ca2+ affinity. As judged by chemical shift differences, the N-terminal CaM domain remains bound to EF upon subsequent Ca2+ ligation. This Ca2+ dependence of the EF-CaM interaction differs from that observed for most other CaM targets, which normally interact only with the Ca2+-bound CaM domains and become active following the transition to the four Ca2+ state.
水肿因子(EF)是炭疽芽孢杆菌(炭疽)产生的一种毒素,具有腺苷酸环化酶活性,其活性需要普遍存在的钙离子传感器钙调蛋白(CaM)。CaM可以存在于三种主要结构状态:未结合钙离子的无钙状态、其C末端结构域结合钙离子的两个钙离子状态以及较低钙离子亲和力的N末端结构域也被连接的四个钙离子状态。在这里,通过核磁共振光谱研究了EF与CaM的三种钙离子状态的相互作用,并通过流动透析测定了在EF存在下CaM的钙离子亲和力变化。CaM的主链化学位移扰动表明,EF与无钙CaM的N末端结构域弱相互作用。C末端CaM结构域仅在钙离子连接时参与相互作用,使得整体相互作用更加紧密。在EF存在下,C末端结构域以更高的亲和力结合钙离子,但失去结合协同性,而N末端结构域表现出强烈降低的钙离子亲和力。根据化学位移差异判断,在随后的钙离子连接后,N末端CaM结构域仍与EF结合。EF-CaM相互作用的这种钙离子依赖性不同于大多数其他CaM靶点所观察到的情况,其他靶点通常仅与结合钙离子的CaM结构域相互作用,并在转变为四个钙离子状态后变得活跃。