Institut Laue-Langevin, 71 Avenue des Martyrs, 38042 Grenoble Cedex 9, France; Faculty of Natural Sciences, Keele University, Staffordshire ST5 5BG, UK.
Univ. Grenoble Alpes, CEA, CNRS, IBS, F-38000 Grenoble, France.
J Colloid Interface Sci. 2019 Oct 15;554:296-304. doi: 10.1016/j.jcis.2019.06.071. Epub 2019 Jun 21.
Seed extracts from Moringa oleifera are of wide interest for use in water purification where they can play an important role in flocculation; they also have potential as anti-microbial agents. Previous work has focused on the crude protein extract. Here we describe the detailed biophysical characterization of individual proteins from these seeds. The results provide new insights relating to the active compounds involved. One fraction, designated Mo-CBP3, has been characterized at a molecular level using a range of biochemical and biophysical techniques including liquid chromatography, X-ray diffraction, mass spectrometry, and neutron reflection. The interfacial behavior is of particular interest in considering water purification applications and interactions with both charged (e.g. silica) and uncharged (alumina) surfaces were studied. The reflection studies show that, in marked contrast to the crude extract, only a single layer of the purified Mo-CBP3 binds to a silica interface and that there is no binding to an alumina interface. These observations are consistent with the crystallographic structure of Mo-CBP3-4, which is one of the main isoforms of the Mo-CBP3 fraction. The results are put in context of previous studies of the properties of the crude extract. This work shows possible routes to development of separation processes that would be based on the specific properties of individual proteins.
辣木籽提取物在水净化中应用广泛,因为它可以在絮凝中发挥重要作用;它还具有作为抗菌剂的潜力。以前的工作主要集中在粗蛋白提取物上。在这里,我们描述了这些种子中单个蛋白质的详细生物物理特性。这些结果提供了与相关活性化合物有关的新见解。一个称为 Mo-CBP3 的部分,已经使用一系列生化和生物物理技术进行了分子水平的表征,包括液相色谱、X 射线衍射、质谱和中子反射。在考虑水净化应用和与带电(例如二氧化硅)和不带电(氧化铝)表面的相互作用时,界面行为尤其有趣。反射研究表明,与粗提物形成鲜明对比的是,只有单层纯化的 Mo-CBP3 与二氧化硅界面结合,而与氧化铝界面没有结合。这些观察结果与 Mo-CBP3-4 的晶体结构一致,Mo-CBP3-4 是 Mo-CBP3 部分的主要同工型之一。这些结果与以前对粗提物性质的研究相结合。这项工作展示了基于单个蛋白质的特定性质开发分离过程的可能途径。