Murine Alox8 versus the human ALOX15B ortholog: differences and similarities

Megan A. Palmer, Yvonne Benatzy, Bernhard Brüne
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Abstract

Human arachidonate 15-lipoxygenase type B is a lipoxygenase that catalyzes the peroxidation of arachidonic acid at carbon-15. The corresponding murine ortholog however has 8-lipoxygenase activity. Both enzymes oxygenate polyunsaturated fatty acids in S-chirality with singular reaction specificity, although they generate a different product pattern. Furthermore, while both enzymes utilize both esterified fatty acids and fatty acid hydro(pero)xides as substrates, they differ with respect to the orientation of the fatty acid in their substrate-binding pocket. While ALOX15B accepts the fatty acid “tail-first,” Alox8 oxygenates the free fatty acid with its “head-first.” These differences in substrate orientation and thus in regio- and stereospecificity are thought to be determined by distinct amino acid residues. Towards their biological function, both enzymes share a commonality in regulating cholesterol homeostasis in macrophages, and Alox8 knockdown is associated with reduced atherosclerosis in mice. Additional roles have been linked to lung inflammation along with tumor suppressor activity. This review focuses on the current knowledge of the enzymatic activity of human ALOX15B and murine Alox8, along with their association with diseases.

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小鼠 Alox8 与人类 ALOX15B 同源物:异同点
人类花生四烯酸 15-脂氧合酶 B 型是一种脂氧合酶,可催化花生四烯酸碳-15 的过氧化反应。然而,相应的鼠类同源物具有 8-脂加氧酶活性。这两种酶都以 S-手性使多不饱和脂肪酸氧合,具有单一的反应特异性,尽管它们生成的产物模式不同。此外,虽然两种酶都利用酯化脂肪酸和脂肪酸氢(过)苷作为底物,但它们在底物结合袋中脂肪酸的取向方面有所不同。ALOX15B 是 "尾部先入 "脂肪酸,而 Alox8 则是 "头部先入 "游离脂肪酸。底物定向的这些差异,以及由此产生的区域特异性和立体特异性,被认为是由不同的氨基酸残基决定的。关于它们的生物功能,这两种酶在调节巨噬细胞中胆固醇平衡方面有共同之处,而且 Alox8 基因敲除与小鼠动脉粥样硬化减少有关。其他作用还与肺部炎症和肿瘤抑制活性有关。本综述将重点介绍人类 ALOX15B 和小鼠 Alox8 的酶活性及其与疾病的关系。
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