首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Sequential inactivation of ζ-crystallin by o-phthalaldehyde
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Sequential inactivation of ζ-crystallin by o-phthalaldehyde

机译:邻苯二甲醛顺序灭活ζ-晶状蛋白

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摘要

o-Phthalaldehyde, a bifunctional cross-linking reagent, is commonly used as a probe for the active site of enzymes. In this study, the interaction of o-phthalaldehyde with camel lens ζ-crystallin was examined by activity and fluorescence measurements. predictably, the oxidoreductase activity of ζ-crystallin was inhibited irreversibly by o-phthalaldehyde in a time- and concentration-dependent manner, and the presence of NADPH with the enzyme appeared to provide a high degree of protection against o-phthalaldehyde inactivation. Interaction of o-phthalaldehyde with ζ-crystallin resulted in formation of isoindole adduct, which exhibited characteristic fluorescence at 415 nm. However, neither inactivation nor modification of the enzyme showed the expected pseudo-first-order kinetics; both events were highly sequential reaching different levels of saturation at different concentrations of o-phthalaldehyde. The modified enzyme had a maximum stoichiometry of 1 mol isoindole/subunit, and bound NADPH to nearly the same extent as unmodified enzyme. Gel filtration experiments suggested that o-phthalaldehyde-modified ζ-crystallin had higher apparent molecular weight than unmodified enzyme, even though the enzyme remained largely monomeric as revealed by electrophoresis on denaturing gel. These results suggested that modification by o-phthalaldehyde might have been so intrusive as to sequentially modify the tetrameric structure of ζ-crystallin.
机译:邻苯二甲醛是一种双功能交联剂,通常用作酶活性位点的探针。在这项研究中,通过活性和荧光测量检查了邻苯二甲醛与骆驼透镜ζ-晶状体蛋白的相互作用。可以预见,邻苯二甲醛以时间和浓度依赖性不可逆地抑制了ζ-晶状蛋白的氧化还原酶活性,NADPH与该酶的存在似乎提供了对邻苯二甲醛灭活的高度保护。邻苯二甲醛与ζ-晶状蛋白的相互作用导致形成异吲哚加合物,该异吲哚加合物在415 nm处具有特征性的荧光。然而,酶的失活或修饰均未显示出预期的拟一级动力学。这两个事件是高度连续的,在不同浓度的邻苯二甲醛处达到不同的饱和度水平。修饰的酶的最大化学计量为1 mol异吲哚/亚基,与NADPH的结合程度与未修饰的酶几乎相同。凝胶过滤实验表明,邻苯甲醛改性的ζ-晶状蛋白具有比未修饰的酶更高的表观分子量,即使该酶在变性凝胶上的电泳显示仍大部分为单体。这些结果表明,通过邻苯二甲醛进行的修饰可能具有侵入性,以至于顺序修饰了ζ-晶状蛋白的四聚体结构。

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