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Posttranslational modification by an isolevuglandin diminishes activity of the mitochondrial cytochrome P450 27A1

机译:异乌头素的翻译后修饰减少了线粒体细胞色素P450 27A1的活性

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摘要

Posttranslational modification by isolevuglandins (isoLGs), arachidonate oxidation products, is an important yet understudied process associated with altered protein properties. This type of modification is detected in cytochrome P450 27A1 (CYP27A1), a multifunction enzyme expressed in almost every cell and involved in the metabolism of cholesterol and other sterols. Previously, the CYP27A1 Lys358-isoLG adduct was found in human retina afflicted with age-related macular degeneration. Yet, the effect of Lys358 modification on enzyme activity was not investigated. Herein, we characterized catalytic properties of Lys358 as well as Lys476 CYP27A1 mutants before and after isoLG treatment and quantified the extent of modification by multiple reaction monitoring. The K358R mutant was less susceptible to isoLG-induced loss of catalytic activity than the wild type (WT), whereas the K476R mutant was nearly as vulnerable as the WT. Both mutants showed less isoLG modification than WT. Thus, modification of Lys358, a residue involved in redox partner interactions, is the major contributor to isoLG-associated loss of CYP27A1 activity. Our data show the specificity of isoLG modification, provide direct evidence that isoLG adduction impairs enzyme activity, and support our hypothesis that isoLG modification in the retina is detrimental to CYP27A1 enzyme activity, potentially disrupting cholesterol homeostasis.
机译:花生四烯酸的氧化产物异左降钙素(isoLGs)的翻译后修饰是与蛋白质性质改变相关的重要但尚未被研究的过程。这种修饰是在细胞色素P450 27A1(CYP27A1)中检测到的,CYP27A1是一种多功能酶,几乎在每个细胞中都有表达,并且参与胆固醇和其他固醇的代谢。以前,CYP27A1 Lys 358 -isoLG加合物存在于患有年龄相关性黄斑变性的人视网膜中。然而,尚未研究Lys 358 修饰对酶活性的影响。在此,我们表征了Lys 358 和Lys 476 CYP27A1突变体在isoLG处理前后的催化特性,并通过多反应监测定量了修饰的程度。与野生型(WT)相比,K358R突变体不易受到isoLG诱导的催化活性损失的影响,而K476R突变体几乎与WT一样脆弱。与WT相比,两个突变体均显示出较少的isoLG修饰。因此,参与氧化还原伴侣相互作用的残基Lys 358 的修饰是isoLG相关CYP27A1活性丧失的主要原因。我们的数据显示了isoLG修饰的特异性,提供了直接证据证明isoLG内加作用会削弱酶的活性,并支持我们的假设,即视网膜中isoLG修饰对CYP27A1酶的活性有害,可能破坏胆固醇的体内稳态。

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