Department of Chemistry and Biochemistry, University of Minnesota Duluth, Duluth, MN, USA.
Biophys J. 2013 Jun 4;104(11):2437-47. doi: 10.1016/j.bpj.2013.03.060.
Isothermal titration calorimetry was used to characterize the binding of calcium ion (Ca²⁺) and phospholipid to the peripheral membrane-binding protein annexin a5. The phospholipid was a binary mixture of a neutral and an acidic phospholipid, specifically phosphatidylcholine and phosphatidylserine in the form of large unilamellar vesicles. To stringently define the mode of binding, a global fit of data collected in the presence and absence of membrane concentrations exceeding protein saturation was performed. A partition function defined the contribution of all heat-evolving or heat-absorbing binding states. We find that annexin a5 binds Ca²⁺ in solution according to a simple independent-site model (solution-state affinity). In the presence of phosphatidylserine-containing liposomes, binding of Ca²⁺ differentiates into two classes of sites, both of which have higher affinity compared with the solution-state affinity. As in the solution-state scenario, the sites within each class were described with an independent-site model. Transitioning from a solution state with lower Ca²⁺ affinity to a membrane-associated, higher Ca²⁺ affinity state, results in cooperative binding. We discuss how weak membrane association of annexin a5 prior to Ca²⁺ influx is the basis for the cooperative response of annexin a5 toward Ca²⁺, and the role of membrane organization in this response.
等温滴定量热法被用于研究钙离子(Ca²⁺)和磷脂与外周膜结合蛋白 annexin A5 的结合。磷脂是一种中性和酸性磷脂的混合物,具体为以大单分子层囊泡形式存在的卵磷脂和磷脂酰丝氨酸。为了严格定义结合模式,对存在和不存在膜浓度超过蛋白质饱和度时收集的数据进行了全局拟合。一个分配函数定义了所有放/吸热结合态的贡献。我们发现 annexin A5 在溶液中根据简单的独立位点模型(溶液状态亲和力)结合 Ca²⁺。在含有磷脂酰丝氨酸的脂质体存在的情况下,Ca²⁺的结合分为两类位点,与溶液状态亲和力相比,这两类位点的亲和力都更高。与溶液状态情况一样,每个类中的位点都用独立位点模型来描述。从具有较低 Ca²⁺亲和力的溶液状态转变为与膜相关的、具有更高 Ca²⁺亲和力的状态,导致协同结合。我们讨论了 annexin A5 在 Ca²⁺流入之前与膜的弱结合如何成为 annexin A5 对 Ca²⁺协同反应的基础,以及膜组织在这种反应中的作用。