首页> 美国卫生研究院文献>Molecular and Cellular Biology >Activation of MTK1/MEKK4 by GADD45 through Induced N-C Dissociation and Dimerization-Mediated trans Autophosphorylation of the MTK1 Kinase Domain
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Activation of MTK1/MEKK4 by GADD45 through Induced N-C Dissociation and Dimerization-Mediated trans Autophosphorylation of the MTK1 Kinase Domain

机译:GADD45通过诱导N-C解离和二聚化介导的MTK1激酶结构域反式自磷酸化激活MTK1 / MEKK4。

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摘要

The mitogen-activated protein kinase (MAPK) module, composed of a MAPK, a MAPK kinase (MAPKK), and a MAPKK kinase (MAPKKK), is a cellular signaling device that is conserved throughout the eukaryotic world. In mammalian cells, various extracellular stresses activate two major subfamilies of MAPKs, namely, the Jun N-terminal kinases and the p38/stress-activated MAPK (SAPK). MTK1 (also called MEKK4) is a stress-responsive MAPKKK that is bound to and activated by the stress-inducible GADD45 family of proteins (GADD45α/β/γ). Here, we dissected the molecular mechanism of MTK1 activation by GADD45 proteins. The MTK1 N terminus bound to its C-terminal segment, thereby inhibiting the C-terminal kinase domain. This N-C interaction was disrupted by the binding of GADD45 to the MTK1 N-terminal GADD45-binding site. GADD45 binding also induced MTK1 dimerization via a dimerization domain containing a coiled-coil motif, which is essential for the trans autophosphorylation of MTK1 at Thr-1493 in the kinase activation loop. An MTK1 alanine substitution mutant at Thr-1493 has a severely reduced activity. Thus, we conclude that GADD45 binding induces MTK1 N-C dissociation, dimerization, and autophosphorylation at Thr-1493, leading to the activation of the kinase catalytic domain. Constitutively active MTK1 mutants induced the same events, but in the absence of GADD45.
机译:由MAPK,MAPK激酶(MAPKK)和MAPKK激酶(MAPKKK)组成的促分裂原活化蛋白激酶(MAPK)模块是一种在整个真核生物世界中都得到保护的细胞信号装置。在哺乳动物细胞中,各种细胞外应激激活MAPK的两个主要亚家族,即Jun N末端激酶和p38 /应激激活的MAPK(SAPK)。 MTK1(也称为MEKK4)是一种应激反应性MAPKKK,与应激诱导的GADD45家族蛋白(GADD45α/β/γ)结合并被其激活。在这里,我们解剖了GADD45蛋白激活MTK1的分子机制。 MTK1 N末端与其C末端区段结合,从而抑制C末端激酶结构域。这种N-C相互作用被GADD45与MTK1 N端GADD45结合位点的结合所破坏。 GADD45结合还通过包含卷曲螺旋基序的二聚化结构域诱导MTK1二聚化,这对于激酶激活环中Thr-1493处MTK1的反式自磷酸化至关重要。在Thr-1493的MTK1丙氨酸取代突变体具有严重降低的活性。因此,我们得出结论,GADD45结合在Thr-1493处诱导MTK1 N-C解离,二聚化和自磷酸化,从而导致激酶催化结构域的活化。组成型活性MTK1突变体诱导了相同的事件,但是没有GADD45。

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