Yiannikouris Alexandros, André Gwénaëlle, Buléon Alain, Jeminet Georges, Canet Isabelle, François Jean, Bertin Gérard, Jouany Jean-Pierre
UR1213 INRA, Unité de Recherches sur les Herbivores, Centre de Clermont-Theix, 63122 St-Genès Champanelle, France.
Biomacromolecules. 2004 Nov-Dec;5(6):2176-85. doi: 10.1021/bm049775g.
The beta-D-glucans from the cell wall of Saccharomyces cerevisiae have shown in vitro affinity for zearalenone. For this reason, their utilization as dietary adsorbent, to reduce the bioavailability of zearalenone, is of practical interest. Our study used powerful devices to elucidate the spatial conformation and molecular sites of interaction between ZEN and beta-D-glucans. In this respect, 1H NMR spectroscopy implicated the hydroxyl groups of the phenol moiety of zearalenone in the complexation by laminarin, a pure beta-(1,3)-D-glucan. X-ray diffraction determined that laminarin displays the conformation of a single-helix with six beta-D-glucopyranose residues per turn. At this stage, molecular modeling was useful to locate the interaction sites and to propose highly probable complexes of zearalenone with laminarin fragment. Interestingly, the beta-(1,3)-D-glucan chain favors a very stable intra-helical association with zearalenone, nicely stabilized by beta-(1,6)-D-glucans side chains. Both hydrogen bonds and van der Waals interactions were precisely identified in the complex and could thus be proposed as driving interactions to monitor the association between the two molecules.
酿酒酵母细胞壁中的β-D-葡聚糖在体外对玉米赤霉烯酮表现出亲和力。因此,将其用作膳食吸附剂以降低玉米赤霉烯酮的生物利用度具有实际意义。我们的研究使用强大的设备来阐明玉米赤霉烯酮与β-D-葡聚糖之间相互作用的空间构象和分子位点。在这方面,1H NMR光谱表明,在与一种纯β-(1,3)-D-葡聚糖海带多糖的络合过程中,玉米赤霉烯酮酚部分的羟基起作用。X射线衍射确定海带多糖呈现单螺旋构象,每圈有六个β-D-吡喃葡萄糖残基。在此阶段,分子建模有助于定位相互作用位点,并提出玉米赤霉烯酮与海带多糖片段的高度可能的复合物。有趣的是,β-(1,3)-D-葡聚糖链有利于与玉米赤霉烯酮形成非常稳定的螺旋内缔合,由β-(1,6)-D-葡聚糖侧链很好地稳定。在复合物中精确鉴定出氢键和范德华相互作用,因此可以提出它们作为驱动相互作用来监测这两种分子之间的缔合。