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混合谱系激酶依赖性JNK激活受支架蛋白JIP与MAPK模块组件相互作用的调控。

Mixed lineage kinase-dependent JNK activation is governed by interactions of scaffold protein JIP with MAPK module components.

作者信息

Nihalani D, Meyer D, Pajni S, Holzman L B

机构信息

Division of Nephrology, Department of Internal Medicine and The Howard Hughes Medical Institute, University of Michigan Medical School, Ann Arbor, MI 48109-0676, USA.

出版信息

EMBO J. 2001 Jul 2;20(13):3447-58. doi: 10.1093/emboj/20.13.3447.

Abstract

It has been proposed that JNK-interacting proteins (JIP) facilitate mixed lineage kinase-dependent signal transduction to JNK by aggregating the three components of a JNK module. A new model for the assembly and regulation of these modules is proposed based on several observations. First, artificially induced dimerization of dual leucine zipper-bearing kinase (DLK) confirmed that DLK dimerization is sufficient to induce DLK activation. Secondly, under basal conditions, DLK associated with JIP is held in a monomeric, unphosphorylated and catalytically inactive state. Thirdly, JNK recruitment to JIP coincided with significantly decreased affinity of JIP and DLK. JNK promoted the dimerization, phosphorylation and activation of JIP-associated DLK. Similarly, treatment of cells with okadaic acid inhibited DLK association with JIP and resulted in DLK dimerization in the presence of JIP. In summary, JIP maintains DLK in a monomeric, unphosphorylated, inactive state. Upon stimulation, JNK-JIP binding affinity increases while JIP-DLK interaction affinity is attenuated. Dissociation of DLK from JIP results in subsequent DLK dimerization, autophosphorylation and module activation. Evidence is provided that this model holds for other MLK-dependent JNK modules.

摘要

有人提出,JNK相互作用蛋白(JIP)通过聚集JNK模块的三个组分促进混合谱系激酶依赖性信号转导至JNK。基于多项观察结果,提出了这些模块的组装和调节新模型。首先,人工诱导含双亮氨酸拉链激酶(DLK)的二聚化证实,DLK二聚化足以诱导DLK激活。其次,在基础条件下,与JIP相关的DLK以单体、未磷酸化且无催化活性的状态存在。第三,JNK募集至JIP与JIP和DLK的亲和力显著降低同时发生。JNK促进了与JIP相关的DLK的二聚化、磷酸化和激活。同样,用冈田酸处理细胞抑制了DLK与JIP的结合,并在有JIP存在的情况下导致DLK二聚化。总之,JIP使DLK保持在单体、未磷酸化的无活性状态。受到刺激后,JNK-JIP结合亲和力增加,而JIP-DLK相互作用亲和力减弱。DLK从JIP解离导致随后的DLK二聚化、自磷酸化和模块激活。有证据表明该模型适用于其他MLK依赖性JNK模块。

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