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Conformational instability of the MARK3 UBA domain compromises ubiquitin recognition and promotes interaction with the adjacent kinase domain

机译:MARK3 UBA结构域的构象不稳定性损害了遍在蛋白的识别并促进了与相邻激酶结构域的相互作用

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摘要

The Par-1/MARK protein kinases play a pivotal role in establishing cellular polarity. This family of kinases contains a unique domain architecture, in which a ubiquitin-associated (UBA) domain is located C-terminal to the kinase domain. We have used a combination of x-ray crystallography and NMR dynamics experiments to understand the interaction of the human (h) MARK3 UBA domain with the adjacent kinase domain as compared with ubiquitin. The x-ray crystal structure of the linked hMARK3 kinase and UBA domains establishes that the UBA domain forms a stable intramolecular interaction with the N-terminal lobe of the kinase domain. However, solution-state NMR studies of the isolated UBA domain indicate that it is highly dynamic, undergoing conformational transitions that can be explained by a folding–unfolding equilibrium. NMR titration experiments indicated that the hMARK3 UBA domain has a detectable but extremely weak affinity for mono ubiquitin, which suggests that conformational instability of the isolated hMARK3 UBA domain attenuates binding to ubiquitin despite the presence of residues typically involved in ubiquitin recognition. Our data identify a molecular mechanism through which the hMARK3 UBA domain has evolved to bind the kinase domain, in a fashion that stabilizes an open conformation of the N- and C-terminal lobes, at the expense of its capacity to engage ubiquitin. These results may be relevant more generally to the 30% of UBA domains that lack significant ubiquitin-binding activity, and they suggest a unique mechanism by which interaction domains may evolve new binding properties.
机译:Par-1 / MARK蛋白激酶在建立细胞极性中起关键作用。该激酶家族包含独特的结构域结构,其中泛素相关的(UBA)结构域位于激酶结构域的C端。我们已经使用X射线晶体学和NMR动力学实验的组合来了解人(h)MARK3 UBA结构域与邻近的激酶结构域(与泛素相比)的相互作用。连接的hMARK3激酶和UBA结构域的X射线晶体结构确定UBA结构域与激酶结构域的N-末端叶形成稳定的分子内相互作用。但是,对分离的UBA结构域的溶液状态NMR研究表明,它是高度动态的,经历构象转变,这可以通过折叠-展开平衡来解释。 NMR滴定实验表明,hMARK3 UBA结构域对单泛素具有可检测但极弱的亲和力,这表明尽管存在通常参与泛素识别的残基,但分离的hMARK3 UBA结构域的构象不稳定性减弱了与泛素的结合。我们的数据确定了hMARK3 UBA结构域进化为结合激酶结构域的分子机制,其方式是稳定N末端和C末端叶的开放构象,但以破坏其参与泛素的能力为代价。这些结果可能更普遍地与缺乏显着的泛素结合活性的30%的UBA结构域相关,并且它们提出了一种独特的机制,相互作用域可以通过该机制发展新的结合特性。

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