Division of Structural Biology and Bioinformatics, CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Jadavpur, Kolkata 700032, India.
FEBS Open Bio. 2013 Feb 4;3:135-43. doi: 10.1016/j.fob.2013.01.010. Print 2013.
Snake venom l-amino acid oxidase (SV-LAAO, a flavor-enzyme) has attracted considerable attention due to its multifunctional nature, which is manifest in diverse clinical and biological effects such as inhibition of platelet aggregation, induction of cell apoptosis and cytotoxicity against various cells. The majority of these effects are mediated by H2O2 generated during the catalytic conversion of l-amino acids. The substrate analog l-propargylglycine (LPG) irreversibly inhibited the enzyme from Crotalus adamanteus and Crotalus atrox in a dose- and time-dependent manner. Inactivation was irreversible which was significantly protected by the substrate l-phenylalanine. A Kitz-Wilson replot of the inhibition kinetics suggested formation of reversible enzyme-LPG complex, which occurred prior to modification and inactivation of the enzyme. UV-visible and fluorescence spectra of the enzyme and the cofactor strongly suggested formation of covalent adduct between LPG and an active site residue of the enzyme. A molecular modeling study revealed that the FAD-binding, substrate-binding and the helical domains are conserved in SV-LAAOs and both His223 and Arg322 are the important active site residues that are likely to get modified by LPG. Chymotrypsin digest of the LPG inactivated enzyme followed by RP-HPLC and MALDI mass analysis identified His223 as the site of modification. The findings reported here contribute towards complete inactivation of SV-LAAO as a part of snake envenomation management.
蛇毒 l-氨基酸氧化酶(SV-LAAO,一种风味酶)因其多功能性质而引起了相当大的关注,这种性质表现在多种临床和生物学效应中,如抑制血小板聚集、诱导细胞凋亡和对各种细胞的细胞毒性。这些效应大多数是由 l-氨基酸催化转化过程中产生的 H2O2 介导的。底物类似物 l-炔丙基甘氨酸(LPG)以剂量和时间依赖的方式不可逆地抑制了来自 Crotalus adamanteus 和 Crotalus atrox 的酶。失活是不可逆的,底物 l-苯丙氨酸显著保护了失活。抑制动力学的 Kitz-Wilson 重绘表明形成了可逆的酶-LPG 复合物,该复合物发生在酶的修饰和失活之前。酶和辅因子的紫外可见和荧光光谱强烈表明 LPG 与酶的活性部位残基之间形成了共价加合物。分子建模研究表明,FAD 结合、底物结合和螺旋结构域在 SV-LAAO 中是保守的,His223 和 Arg322 是可能被 LPG 修饰的重要活性部位残基。LPG 失活酶的胰凝乳蛋白酶消化后进行 RP-HPLC 和 MALDI 质量分析,鉴定出 His223 是修饰的位点。这里报道的发现有助于作为蛇咬伤管理的一部分,完全失活 SV-LAAO。