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Acrolein modifies and inhibits cytosolic aspartate aminotransferase.

机译:丙烯醛修饰并抑制胞质天冬氨酸转氨酶。

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Acrolein is a reactive lipid peroxidation byproduct, which is found in ischemic tissue. We examined the effects of acrolein on cytosolic aspartate aminotransferase (cAAT), which is an enzyme that was previously shown to be inhibited by glycating agents. cAAT is thought to protect against ischemic injury. We observed that acrolein cross-linked cAAT subunits as evidenced by the presence of high molecular weight bands following SDS-PAGE. Acrolein-modified cAAT resisted thermal denaturation when compared with native cAAT. We also observed a decrease in intrinsic fluorescence (290 nm, ex; 380 nm, em). These observations are consistent with an acrolein-induced change in conformation that is more rigid and compact than native cAAT, suggesting that intramolecular cross-links occurred. Acrolein also inhibited activity, and the inhibition of enzyme activity correlated with the acrolein-induced formation of cAAT cross-links.
机译:丙烯醛是一种脂质过氧化反应性副产物,存在于缺血组织中。我们检查了丙烯醛对胞质天冬氨酸转氨酶(cAAT)的作用,该酶先前已被糖化剂抑制。 cAAT被认为可以预防缺血性损伤。我们观察到丙烯醛交联的cAAT亚基,如SDS-PAGE后高分子量谱带的存在所证明。与天然cAAT相比,丙烯醛修饰的cAAT抗热变性。我们还观察到固有荧光的减少(290 nm,前; 380 nm,em)。这些观察结果与丙烯醛诱导的构象变化相一致,该变化比天然的cAAT更坚硬和紧凑,表明发生了分子内交联。丙烯醛还抑制活性,酶活性的抑制与丙烯醛诱导的cAAT交联的形成有关。

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