首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Enzyme Kinetics and Interaction Studies for Human JNK1β1 and Substrates Activating Transcription Factor 2 (ATF2) and c-Jun N-terminal kinase (c-Jun)
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Enzyme Kinetics and Interaction Studies for Human JNK1β1 and Substrates Activating Transcription Factor 2 (ATF2) and c-Jun N-terminal kinase (c-Jun)

机译:人JNK1β1和底物激活转录因子2(ATF2)和c-Jun N端激酶(c-Jun)的酶动力学和相互作用研究

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摘要

c-Jun N-terminal kinase (JNK) is a stress signal transducer linked to cell death, and survival. JNK1 has been implicated in obesity, glucose intolerance, and insulin resistance. In this study we report the kinetic mechanism for JNK1β1 with transcription factors ATF2 and c-Jun along with interaction kinetics for these substrates. JNK1β1 followed a random sequential mechanism forming a ternary complex between JNK-substrate-ATP. Km for ATF2 and c-Jun was 1.1 and 2.8 μm, respectively. Inhibition studies using adenosine 5′-(β,γ-methylenetriphosphate) and a peptide derived from JNK interacting protein 1 (JIP1) supported the proposed kinetic mechanism. Biolayer interferometry studies showed that unphosphorylated JNK1β1 bound to ATF2 with similar affinity as it did to c-Jun (KD = 2.60 ± 0.34 versus 1.00 ± 0.35 μm, respectively). The presence of ATP increased the affinity of unphosphorylated JNK1β1 for ATF2 and c-Jun, to 0.80 ± 0.04 versus 0.65 ± 0.07 μm, respectively. Phosphorylation of JNK1β1 decreased the affinity of the kinase for ATF2 to 11.0 ± 1.1 μm and for c-Jun to 17.0 ± 7.5 μm in the absence of ATP. The presence of ATP caused a shift in the KD of the active kinase for ATF2 to 1.70 ± 0.25 μm and for c-Jun of 3.50 ± 0.95 μm. These results are the first kinetic and biochemical characterization of JNK1β1 and uncover some of the differences in the enzymatic activity of JNK1β1 compared with other variants and suggest that ATP binding or JNK phosphorylation could induce changes in the interactions with substrates, activators, and regulatory proteins.
机译:c-Jun N末端激酶(JNK)是与细胞死亡和存活相关的应激信号转导子。 JNK1与肥胖,葡萄糖耐受不良和胰岛素抵抗有关。在这项研究中,我们报告了JNK1β1与转录因子ATF2和c-Jun的动力学机制,以及这些底物的相互作用动力学。 JNK1β1遵循随机顺序机制,在JNK-底物-ATP之间形成三元复合物。 ATF2和c-Jun的Km分别为1.1和2.8μm。使用腺苷5'-(β,γ-亚甲基三磷酸)和衍生自JNK相互作用蛋白1(JIP1)的肽进行的抑制研究支持了所提出的动力学机制。生物层干涉测量法研究表明,未磷酸化的JNK1β1以与c-Jun相似的亲和力与ATF2结合(KD分别为2.60±0.34和1.00±0.35μm)。 ATP的存在将未磷酸化的JNK1β1对ATF2和c-Jun的亲和力分别提高到0.80±0.04和0.65±0.07μm。在没有ATP的情况下,JNK1β1的磷酸化使激酶对ATF2的亲和力降低至11.0±1.1μm,对c-Jun的亲和力降低至17.0±7.5μm。 ATP的存在导致ATF2的活性激酶的KD偏移为1.70±0.25μm,c-Jun的为3.50±0.95μm。这些结果是JNK1β1的第一个动力学和生化特征,并且揭示了JNK1β1与其他变体相比在酶促活性方面的一些差异,并表明ATP结合或JNK磷酸化可以诱导与底物,激活剂和调节蛋白相互作用的变化。

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