College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Toxicon. 2013 Nov;74:34-43. doi: 10.1016/j.toxicon.2013.07.022. Epub 2013 Aug 2.
To more fully understand the mechanism by which persimmon tannin (PT) inhibited phospholipase A2 (PLA2) and the structural requirements of PT for the inhibition, the interactions between PLA2 and seven characteristic structural elements of PT including epigallocatechin-3-gallate (EGCG), myricetin, epicatechin-3-gallate (ECG), epicatechin-3-gallate-(4β → 8, 2β → O → 7)-epicatechin-3-gallate (A-type ECG dimer), epigallocatechin-3-gallate-(4β → 8, 2β → O → 7)-epigallocatechin-3-gallate (A-type EGCG dimer), epicatechin-(4β → 8, 2β → O → 7)-epicatechin (A-type EC dimer) and epicatechin-(4β → 8)-epicatechin (B-type EC dimer) were studied by enzymatic and spectroscopic methods. Molecular docking was also used to explore the possible residues involved in the interactions. The results revealed that A-type EGCG dimer and A-type ECG dimer showed higher inhibitory effects on the catalytic activity of PLA2 than monomers and B-type dimer. They induced greater conformational changes in PLA2 than other structural elements. In addition, molecular docking studies revealed that expect for lysine residues, other residues such as Trp18, Try27, Gly29, His47 and Tyr63 were involved in the interactions. We propose that A-type EGCG and ECG dimer units may be structural requirements for the interaction between PT and PLA2. Our data provide an additional structural basis for anti-PLA2 activity of persimmon tannin.
为了更全面地了解柿子单宁(PT)抑制磷脂酶 A2(PLA2)的机制以及 PT 抑制 PLA2 的结构要求,研究了 PLA2 与柿子单宁的 7 个特征结构单元(表没食子儿茶素没食子酸酯(EGCG)、杨梅素、表儿茶素没食子酸酯(ECG)、表儿茶素没食子酸酯-(4β→8, 2β→O→7)-表儿茶素没食子酸酯(A 型 ECG 二聚体)、表没食子儿茶素没食子酸酯-(4β→8, 2β→O→7)-表没食子儿茶素没食子酸酯(A 型 EGCG 二聚体)、表儿茶素-(4β→8, 2β→O→7)-表儿茶素(A 型 EC 二聚体)和表儿茶素-(4β→8)-表儿茶素(B 型 EC 二聚体))之间的相互作用。还采用酶法和光谱法研究了分子对接,以探索相互作用中可能涉及的残基。结果表明,A 型 EGCG 二聚体和 A 型 ECG 二聚体对 PLA2 催化活性的抑制作用高于单体和 B 型二聚体。它们诱导 PLA2 发生更大的构象变化。此外,分子对接研究表明,除赖氨酸残基外,色氨酸残基 18(Trp18)、色氨酸残基 27(Try27)、甘氨酸残基 29(Gly29)、组氨酸残基 47(His47)和酪氨酸残基 63(Tyr63)等其他残基也参与了相互作用。我们提出 A 型 EGCG 和 ECG 二聚体单元可能是 PT 与 PLA2 相互作用的结构要求。我们的数据为柿子单宁的抗 PLA2 活性提供了额外的结构基础。