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Acetaldehyde-derived modifications on cytosolic human carbonic anhydrases

机译:乙醛对胞质人碳酸酐酶的修饰

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Acetaldehyde can generate modifications in several proteins, such as carbonic anhydrase (CA) II. In this study, we extended in vitro investigations on acetaldehyde adduct formation by focusing on the other human cytosolic CA enzymes I, III, VII, and XIII. High-resolution mass spectrometric analysis indicated that acetaldehyde most efficiently formed covalent adducts with CA II and XIII. The binding of up to 19 acetaldehydes in CA II is probably attributable to the high number of lysine residues (n?=?24) located mainly on the surface of the enzyme molecule. CA XIII formed more adducts (up to 25) than it contains lysine residues (n?=?16) in its primary structure. Acetaldehyde treatment induced only minor changes in CA catalytic activity in most cases. The present study provides the first evidence that acetaldehyde can bind to several cytosolic CA isozymes. The functional consequences of such modifications will be further investigated in vivo by using animal models.
机译:乙醛可以在几种蛋白质中产生修饰,例如碳酸酐酶(CA)II。在这项研究中,我们通过关注其他人类胞质CA酶I,III,VII和XIII扩展了乙醛加合物形成的体外研究。高分辨率质谱分析表明,乙醛最有效地与CA II和XIII形成共价加合物。 CA II中多达19个乙醛的结合可能归因于主要位于酶分子表面上的大量赖氨酸残基(n≥24)。 CA XIII形成的加合物(最多25个)比其一级结构中包含的赖氨酸残基(n≥16)更多。在大多数情况下,乙醛处理仅引起CA催化活性的微小变化。本研究提供了乙醛可以结合几种胞质CA同工酶的第一个证据。此类修饰的功能后果将通过使用动物模型在体内进行进一步研究。

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