Sorensen B R, Shea M A
Department of Biochemistry, University of Iowa College of Medicine, Iowa City 52242-1109, USA.
Biochemistry. 1998 Mar 24;37(12):4244-53. doi: 10.1021/bi9718200.
Calmodulin (CaM) is an essential protein that exerts exquisite spatial and temporal control over diverse eukaryotic processes. Although the two half-molecule domains of CaM each have two EF-hands and bind two calcium ions cooperatively, they have distinct roles in activation of some targets. Interdomain interactions may mediate coordination of their actions. Proteolytic footprinting titrations of CaM [Pedigo and Shea (1995) Biochemistry 34, 1179-1196; Shea, Verhoeven, and Pedigo (1996) Biochemistry 35, 2943-2957] showed that calcium binding to the high-affinity sites (III and IV in the C-domain) alters the conformation of helix B in the N-domain despite sites I and II being vacant. This may arise from calcium-induced disruption of interactions between the apo domains. In this study, comparing the cloned domains (residues 1-75, 76-148) to whole CaM, the proteolytic susceptibility of helix B in the apo isolated N-domain was higher than in apo CaM. The isolated N-domain was monotonically protected by calcium binding and had a higher calcium affinity than when part of whole CaM. The change in affinity was small (1-1.5 kcal/mol) but acted to separate the domain saturation curves of whole CaM. Unfolding enthalpies and melting temperatures of the apo isolated domains did not correspond to the two transitions resolved for apo CaM. In summary, the interactions between domains of apo CaM protected the N-domain from proteolysis and raised its Tm by 10 degrees C, demonstrating that CaM is not the sum of its parts.
钙调蛋白(CaM)是一种重要蛋白质,对多种真核生物过程发挥着精确的空间和时间控制作用。尽管CaM的两个半分子结构域各有两个EF手型结构且协同结合两个钙离子,但它们在某些靶标的激活中具有不同作用。结构域间相互作用可能介导其作用的协调。对CaM进行的蛋白水解足迹滴定[佩迪戈和谢伊(1995年)《生物化学》第34卷,第1179 - 1196页;谢伊、韦尔霍温及佩迪戈(1996年)《生物化学》第35卷,第2943 - 2957页]表明,钙离子与高亲和力位点(C结构域中的III和IV)结合会改变N结构域中螺旋B的构象,尽管位点I和II为空位。这可能是由于钙离子诱导的无钙结构域间相互作用的破坏。在本研究中,将克隆的结构域(第1 - 75位、76 - 148位残基)与完整的CaM进行比较,无钙分离的N结构域中螺旋B的蛋白水解敏感性高于无钙CaM中的情况。分离的N结构域受钙离子结合的保护呈单调变化,且其钙亲和力高于作为完整CaM一部分时的情况。亲和力变化较小(1 - 1.5千卡/摩尔),但起到了区分完整CaM的结构域饱和曲线的作用。无钙分离结构域的解链焓和熔解温度与无钙CaM解析出的两个转变不对应。总之,无钙CaM结构域间的相互作用保护N结构域不被蛋白水解,并使其熔解温度提高了10摄氏度,表明CaM并非其各部分的简单相加。