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GSTpi modulates JNK activity through a direct interaction with JNK substrate ATF2

机译:GSTpi通过与JNK底物ATF2直接相互作用来调节JNK活性

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摘要

Human GSTpi, an important detoxification enzyme, has been shown to modulate the activity of JNKs by inhibiting apoptosis and by causing cell proliferation and tumor growth. In this work, we describe a detailed analysis of the interaction in vitro between GSTpi and JNK isoforms (both in their inactive and active, phosphorylated forms). The ability of active JNK1 or JNK2 to phosphorylate their substrate, ATF2, is inhibited by two naturally occurring GSTpi haplotypes (Ile105/Ala114, WT or haplotype A, and Val105/Val114, haplotype C). Haplotype C of GSTpi is a more potent inhibitor of JNK activity than haplotype A, yielding 75–80% and 25–45% inhibition, respectively. We show that GSTpi is not a substrate of JNK, as was earlier suggested by others. Through binding studies, we demonstrate that the interaction between GSTpi and phosphorylated, active JNKs is isoform specific, with JNK1 being the preferred isoform. In contrast, GSTpi does not interact with unphosphorylated, inactive JNKs unless a JNK substrate, ATF2, is present. We also demonstrate, for the first time, a direct interaction: between GSTpi and ATF2. GSTpi binds with similar affinity to active JNK + ATF2 and to ATF2 alone. Direct binding experiments between ATF2 and GSTpi, either alone or in the presence of glutathione analogs or phosphorylated ATF2, indicate that the xenobiotic portion of the GSTpi active site and the JNK binding domain of ATF2 are involved in this interaction. Competition between GSTpi and active JNK for the substrate ATF2 may be responsible for the inhibition of JNK catalysis by GSTpi.
机译:人GSTpi是一种重要的排毒酶,已被证明可通过抑制细胞凋亡以及引起细胞增殖和肿瘤生长来调节JNK的活性。在这项工作中,我们描述了GSTpi和JNK亚型之间的相互作用的详细分析(两者均为非活性和活性形式,均为磷酸化形式)。两种天然存在的GSTpi单倍型(Ile105 / Ala114,WT或单倍型A,以及Val105 / Val114,单倍型C)抑制了活性JNK1或JNK2磷酸化其底物ATF2的能力。与单倍型A相比,GSTpi的单倍型C是更有效的JNK活性抑制剂,分别产生75-80%和25-45%的抑制作用。我们表明,GSTpi不是JNK的底物,正如其他人先前所暗示的那样。通过结合研究,我们证明了GSTpi和磷酸化的活性JNK之间的相互作用是特定的同工型,而JNK1是优选的同工型。相反,除非存在JNK底物ATF2,否则GSTpi不会与未磷酸化的非活性JNK相互作用。我们还首次展示了直接交互:GSTpi和ATF2之间。 GSTpi以相似的亲和力与活性JNK + ATF2以及单独与ATF2结合。单独或在谷胱甘肽类似物或磷酸化ATF2存在下,ATF2与GSTpi之间的直接结合实验表明,GSTpi活性位点的异种生物部分和ATF2的JNK结合结构域参与了这种相互作用。 GSTpi和活性JNK之间对底物ATF2的竞争可能是由GSTpi抑制JNK催化的原因。

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