Myocardial Biology Unit, Cardiovascular Medicine, Department of Medicine, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
J Biol Chem. 2012 Dec 7;287(50):42400-6. doi: 10.1074/jbc.M112.385831. Epub 2012 Oct 19.
Oxidative stress is pathogenic in a variety of diseases, but the mechanism by which cellular signaling is affected by oxidative species has yet to be fully characterized. Lipid peroxidation, a secondary process that occurs during instances of free radical production, may play an important role in modulating cellular signaling under conditions of oxidative stress. 4-Hydroxy-trans-2-nonenal (HNE) is an electrophilic aldehyde produced during lipid peroxidation that forms covalent adducts on proteins, altering their activity and function. One such target, LKB1, has been reported to be inhibited by HNE adduction. We tested the hypothesis that HNE inhibits LKB1 activity through adduct formation on a specific reactive residue of the protein. To elucidate the mechanism of the inhibitory effect, HEK293T cells expressing LKB1 were treated with HNE (10 μm for 1 h) and assayed for HNE-LKB1 adduct formation and changes in LKB1 kinase activity. HNE treatment resulted in the formation of HNE-LKB1 adducts and decreased LKB1 kinase activity by 31 ± 9% (S.E.) but had no effect on the association of LKB1 with its adaptor proteins sterile-20-related adaptor and mouse protein 25. Mutation of LKB1 lysine residue 97 reduced HNE adduct formation and attenuated the effect of HNE on LKB1 activity. Taken together, our results suggest that adduction of LKB1 Lys-97 mediates the inhibitory effect of HNE.
氧化应激在多种疾病中具有致病性,但细胞信号受氧化物质影响的机制尚未得到充分阐明。脂质过氧化是自由基产生时发生的次级过程,可能在氧化应激条件下调节细胞信号中发挥重要作用。4-羟基-反式-2-壬烯醛(HNE)是脂质过氧化过程中产生的一种亲电性醛,它与蛋白质形成共价加合物,改变其活性和功能。已报道 LKB1 是一种被 HNE 加合物抑制的靶标。我们检验了这样一个假设,即 HNE 通过蛋白质上特定的反应性残基的加合物形成来抑制 LKB1 活性。为了阐明抑制作用的机制,用 HNE(10μm,1h)处理表达 LKB1 的 HEK293T 细胞,检测 HNE-LKB1 加合物的形成和 LKB1 激酶活性的变化。HNE 处理导致 HNE-LKB1 加合物的形成,并使 LKB1 激酶活性降低 31±9%(S.E.),但对 LKB1 与衔接蛋白 sterile-20-related adaptor 和 mouse protein 25 的结合没有影响。LKB1 赖氨酸残基 97 的突变减少了 HNE 加合物的形成,并减弱了 HNE 对 LKB1 活性的影响。总之,我们的结果表明,LKB1 Lys-97 的加合物介导了 HNE 的抑制作用。