亲电炎症介质和反应性药物对GSTP1-1寡聚化的调节。

Francisco J Sánchez-Gómez, Carlos García Dorado, Pedro Ayuso, Jose A G Agúndez, María A Pajares, Dolores Pérez-Sala
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引用次数: 11

摘要

谷胱甘肽S转移酶P1-1在炎症介质和药物的代谢中起关键作用,从而调节炎症反应。活性GSTP1-1是一种同型二聚体,其半胱氨酸残基靠近活性位点,在应激反应中可以发生寡聚化,这一过程影响酶活性以及与信号和氧化还原活性蛋白的相互作用。环戊酮前列腺素(Cyclopentenone prostaglandins, cyPG)是内源性反应性脂质介质,参与炎症调节,并可能通过Michael加成共价修饰蛋白质。具有二烯酮结构的cyPG可与邻近半胱氨酸结合,诱导GSTP1-1不可逆低聚化。在这里,我们表征了15-deoxy-Δ12,14-PGJ2 (15d-PGJ2)处理的Jurkat细胞中GSTP1-1的低聚状态。蓝色原生二维电泳显示,15d-PGJ2可诱导可逆和不可逆的GSTP1-1寡聚化。有趣的是,在对照细胞中,分析凝胶过滤色谱检测到的主要是GSTP1-1二聚体,而在15d- pgj2处理的细胞中,只发现了与四聚体结合状态相容的低聚物。cypg诱导的GSTP1-1寡聚化也发生在无细胞系统中。因此,我们采用该模型来评估内源性反应物质和药物的影响。炎症介质,如15d-PGJ2和Δ12-PGJ2,以及氯苯、氧化苯larsine或二溴莫烷等药物可引起GSTP1-1寡聚或无细胞系统中的分子内交联,从而产生每种化合物特异性的GSTP1-1物种。这些观察结果将GSTP1-1置于炎症和药物作用的十字路口,作为炎症介质和反应性药物的靶标,诱导或相互调节GSTP1-1寡聚化或构象。
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Modulation of GSTP1-1 oligomerization by electrophilic inflammatory mediators and reactive drugs.

Glutathione S transferase P1-1 plays a key role in the metabolism of inflammatory mediators and drugs, thus modulating the inflammatory response. Active GSTP1-1 is a homodimer with cysteine residues close to the active site that can undergo oligomerization in response to stress, a process that affects enzyme activity and interactions with signaling and redox-active proteins. Cyclopentenone prostaglandins (cyPG) are endogenous reactive lipid mediators that participate in the regulation of inflammation and may covalently modify proteins through Michael addition. cyPG with dienone structure, which can bind to vicinal cysteines, induce an irreversible oligomerization of GSTP1-1. Here we have characterized the oligomeric state of GSTP1-1 in Jurkat cells treated with 15-deoxy-Δ12,14-PGJ2 (15d-PGJ2). 15d-PGJ2 induces both reversible and irreversible GSTP1-1 oligomerization as shown by blue-native 2D electrophoresis. Interestingly, GSTP1-1 dimers were the main species detected by analytical gel filtration chromatography in control cells, whereas only oligomers, compatible with a tetrameric association state, were found in 15d-PGJ2-treated cells. cyPG-induced GSTP1-1 oligomerization also occurred in cell-free systems. Therefore, we employed this model to assess the effects of endogenous reactive species and drugs. Inflammatory mediators, such as 15d-PGJ2 and Δ12-PGJ2, and drugs like chlorambucil, phenylarsine oxide or dibromobimane elicited whereas ethacrynic acid hampered GSTP1-1 oligomerization or intra-molecular cross-linking in cell-free systems, yielding GSTP1-1 species specific for each compound. These observations situate GSTP1-1 at the cross-roads of inflammation and drug action behaving as a target for both inflammatory mediators and reactive drugs, which induce or reciprocally modulate GSTP1-1 oligomerization or conformation.

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