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Mechanism of Membrane Binding by the Bovine Seminal Plasma Protein PDC-109: A Surface Plasmon Resonance Study

机译:牛精浆蛋白PDC-109的膜结合机理:表面等离子体共振研究。

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摘要

PDC-109, the major protein of bovine seminal plasma, binds to sperm plasma membranes upon ejaculation and plays a crucial role in the subsequent events leading to fertilization. The binding process is mediated primarily by the specific interaction of PDC-109 with choline-containing phospholipids. In the present study the kinetics and mechanism of the interaction of PDC-109 with phospholipid membranes were investigated by the surface plasmon resonance technique. Binding of PDC-109 to different phospholipid membranes containing 20% cholesterol (wt/wt) indicated that binding occurs by a single-step mechanism. The association rate constant (k1) for the binding of PDC-109 to dimyristoylphosphatidylcholine (DMPC) membranes containing cholesterol was estimated to be 5.7 × 105 M−1 s−1 at 20°C, while the values of k1 estimated at the same temperature for the binding to membranes of negatively charged phospholipids such as dimyristoylphosphatidylglycerol (DMPG) and dimyristoylphosphatidic acid (DMPA) containing 20% cholesterol (wt/wt) were at least three orders of magnitude lower. The dissociation rate constant (k−1) for the DMPC/PDC-109 system was found to be 2.7 × 10−2 s−1 whereas the k−1 values obtained with DMPG and DMPA was about three to four times higher. From the kinetic data, the association constant for the binding of PDC-109 to DMPC was estimated as 2.1 × 107 M−1. The association constants for different phospholipids investigated decrease in the order: DMPC > DMPG > DMPA > DMPE. Thus the higher affinity of PDC-109 for choline phospholipids is reflected in a faster association rate constant and a slower dissociation rate constant for DMPC as compared to the other phospholipids. Binding of PDC-109 to dimyristoylphosphatidylethanolamine and dipalmitoylphosphatidylethanolamine, which are also zwitterionic, was found to be very weak, clearly indicating that the charge on the lipid headgroup is not the determining factor for the binding. Analysis of the activation parameters indicates that the interaction of PDC-109 with DMPC membranes is favored by a strong entropic contribution, whereas negative entropic contribution is primarily responsible for the rather weak interaction of this protein with DMPA and DMPG.
机译:PDC-109是牛精浆的主要蛋白质,在射精时与精子质膜结合,并在随后导致受精的事件中起关键作用。结合过程主要由PDC-109与含胆碱的磷脂的特异性相互作用介导。在本研究中,通过表面等离振子共振技术研究了PDC-109与磷脂膜相互作用的动力学和机理。 PDC-109与包含20%胆固醇(wt / wt)的不同磷脂膜的结合表明结合是通过单步机制发生的。 PDC-109与含胆固醇的二豆蔻酰磷脂酰胆碱(DMPC)膜结合的缔合速率常数(k1)估计为5.7×10 5 M -1 s -1 ,而在相同温度下估计的k1值是用于结合带负电荷的磷脂膜的,例如含有20%胆固醇(wt / wt)至少降低三个数量级。发现DMPC / PDC-109系统的解离速率常数(k-1)为2.7×10 -2 s -1 ,而获得的k-1值使用DMPG和DMPA的用户大约要高三到四倍。从动力学数据来看,PDC-109与DMPC结合的缔合常数估计为2.1×10 7 M -1 。研究的不同磷脂的缔合常数依次降低:DMPC> DMPG> DMPA> DMPE。因此,与其他磷脂相比,PDC-109对胆碱磷脂的更高的亲和力反映在对DMPC的更快的缔合速率常数和更慢的解离速率常数上。发现PDC-109与也是两性离子的二肉豆蔻酰基磷脂酰乙醇胺和二棕榈酰磷脂酰乙醇胺的结合非常弱,清楚地表明脂质头基上的电荷不是结合的决定因素。激活参数的分析表明,PDC-109与DMPC膜的相互作用受强大的熵贡献所促进,而负熵的贡献主要是由于该蛋白与DMPA和DMPG的相互作用较弱。

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