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Analysis of the LKB1-STRAD-MO25 complex.

机译:LKB1-STRAD-MO25复合物的分析。

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Mutations in the LKB1 tumour suppressor threonine kinase cause the inherited Peutz-Jeghers cancer syndrome and are also observed in some sporadic cancers. Recent work indicates that LKB1 exerts effects on metabolism, polarity and proliferation by phosphorylating and activating protein kinases belonging to the AMPK subfamily. In vivo, LKB1 forms a complex with STRAD, an inactive pseudokinase, and MO25, an armadillo repeat scaffolding-like protein. Binding of LKB1 to STRAD-MO25 activates LKB1 and re-localises it from the nucleus to the cytoplasm. To learn more about the inherent properties of the LKB1-STRAD-MO25 complex, we first investigated the activity of 34 point mutants of LKB1 found in human cancers and their ability to interact with STRAD and MO25. Interestingly, 12 of these mutants failed to interact with STRAD-MO25. Performing mutagenesis analysis, we defined two binding sites located on opposite surfaces of MO25alpha, which are required for the assembly of MO25alpha into a complex with STRADalpha and LKB1. In addition, we demonstrate that LKB1 does not require phosphorylation of its own T-loop to be activated by STRADalpha-MO25alpha, and discuss the possibility that this unusual mechanism of regulation arises from LKB1 functioning as an upstream kinase. Finally, we establish that STRADalpha, despite being catalytically inactive, is still capable of binding ATP with high affinity, but that this is not required for activation of LKB1. Taken together, our findings reinforce the functional importance of the binding of LKB1 to STRAD, and provide a greater understanding of the mechanism by which LKB1 is regulated and activated through its interaction with STRAD and MO25.
机译:LKB1肿瘤抑制物苏氨酸激酶中的突变会导致遗传的Peutz-Jeghers癌症综合症,并且在某些散发性癌症中也观察到。最近的工作表明,LKB1通过磷酸化和激活属于AMPK家族的蛋白激酶而对代谢,极性和增殖产生影响。在体内,LKB1与失活的假激酶STRAD和犰狳重复支架样蛋白MO25形成复合物。 LKB1与STRAD-MO25的结合激活LKB1,并将其从细胞核重新定位到细胞质。为了了解有关LKB1-STRAD-MO25复合体的固有特性的更多信息,我们首先研究了在人类癌症中发现的LKB1的34个点突变体的活性及其与STRAD和MO25相互作用的能力。有趣的是,这些突变体中有12个未能与STRAD-MO25相互作用。通过进行诱变分析,我们定义了位于MO25alpha相对表面的两个结合位点,这是MO25alpha与STRADalpha和LKB1组装成复合物所必需的。此外,我们证明了LKB1不需要被STRADalpha-MO25alpha激活的自身T环的磷酸化,并讨论了这种异常调节机制是由LKB1充当上游激酶而引起的。最后,我们确定,尽管STRADalpha具有催化惰性,但仍能够以高亲和力结合ATP,但这对于激活LKB1并不是必需的。综上所述,我们的发现加强了LKB1与STRAD结合的功能重要性,并提供了对LKB1与STRAD和MO25相互作用的调控和激活机制的更深入了解。

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