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MEK1和MEK2特有的富含脯氨酸序列是Raf结合所必需的,并调节MEK功能。

A proline-rich sequence unique to MEK1 and MEK2 is required for raf binding and regulates MEK function.

作者信息

Catling A D, Schaeffer H J, Reuter C W, Reddy G R, Weber M J

机构信息

Department of Microbiology and Cancer Center, University of Virginia Health Sciences Center, Charlottesville 22908, USA.

出版信息

Mol Cell Biol. 1995 Oct;15(10):5214-25. doi: 10.1128/MCB.15.10.5214.

Abstract

Mammalian MEK1 and MEK2 contain a proline-rich (PR) sequence that is absent both from the yeast homologs Ste7 and Byr1 and from a recently cloned activator of the JNK/stress-activated protein kinases, SEK1/MKK4. Since this PR sequence occurs in MEKs that are regulated by Raf family enzymes but is missing from MEKs and SEKs activated independently of Raf, we sought to investigate the role of this sequence in MEK1 and MEK2 regulation and function. Deletion of the PR sequence from MEK1 blocked the ability of MEK1 to associate with members of the Raf family and markedly attenuated activation of the protein in vivo following growth factor stimulation. In addition, this sequence was necessary for efficient activation of MEK1 in vitro by B-Raf but dispensable for activation by a novel MEK1 activator which we have previously detected in fractionated fibroblast extracts. Furthermore, we found that a phosphorylation site within the PR sequence of MEK1 was required for sustained MEK1 activity in response to serum stimulation of quiescent fibroblasts. Consistent with this observation, we observed that MEK2, which lacks a phosphorylation site at the corresponding position, was activated only transiently following serum stimulation. Finally, we found that deletion of the PR sequence from a constitutively activated MEK1 mutant rendered the protein nontransforming in Rat1 fibroblasts. These observations indicate a critical role for the PR sequence in directing specific protein-protein interactions important for the activation, inactivation, and downstream functioning of the MEKs.

摘要

哺乳动物的MEK1和MEK2含有一个富含脯氨酸(PR)的序列,酵母同源物Ste7和Byr1以及最近克隆的JNK/应激激活蛋白激酶激活剂SEK1/MKK4中均不存在该序列。由于该PR序列存在于受Raf家族酶调控的MEK中,但在独立于Raf激活的MEK和SEK中缺失,我们试图研究该序列在MEK1和MEK2调控及功能中的作用。从MEK1中删除PR序列会阻止MEK1与Raf家族成员结合的能力,并显著减弱生长因子刺激后体内该蛋白的激活。此外,该序列对于B-Raf在体外有效激活MEK1是必需的,但对于我们之前在分级分离的成纤维细胞提取物中检测到的一种新型MEK1激活剂的激活则是可有可无的。此外,我们发现MEK1的PR序列内的一个磷酸化位点是静止的成纤维细胞对血清刺激产生持续MEK1活性所必需的。与这一观察结果一致,我们发现相应位置缺乏磷酸化位点的MEK2在血清刺激后仅短暂激活。最后,我们发现从组成型激活的MEK1突变体中删除PR序列会使该蛋白在Rat1成纤维细胞中失去转化能力。这些观察结果表明PR序列在指导对MEK的激活、失活和下游功能很重要的特定蛋白质-蛋白质相互作用中起关键作用。

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