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Recruitment interactions can override catalytic interactions in determining the functional identity of a protein kinase

机译:在确定蛋白激酶的功能同一性时,招聘相互作用可以优先于催化相互作用

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摘要

The yeast Saccharomyces cerevisae has four distinct mitogen activated protein kinase kinases (MAPKKs), each of which has a distinct functional identity characterized by communication with specific upstream and downstream partners to form distinct func tional pathways. These four kinases belong to one family, sharing closely related catalytic domains. How have these four related kinases diverged to take on four distinct functional roles? The spe cificity of an enzyme for a particular substrate is often thought to reside in differences in the catalytic domain. However, many kinases, including MAPKKs, have modular interaction domains and motifs that have been shown to play an important role in deter mining the specificity of kinases through recruitment to specific partners and complexes. Here we probe the relative importance of catalytic domain interactions versus recruitment interactions in defining the functional identity of MAPKKs by asking whether we can use recruitment interactions to force other MAPKK catalytic domains to play the functional role of the mating MAPKK, Ste7. We find that two alternative MAPKKs, Pbs2 and Mkk2, can be forced to functionally replace the mating MAPKK Ste7, but only if the proper set of recruitment interactions are grafted onto their cata lytic domains. These results show that within a family of kinases, recruitment interactions can play a dominant role in defining func tional identity, and is consistent with a model in which new kinase functions can arise through recombination of existing catalytic domains with new interaction modules.
机译:酵母酿酒酵母具有四种不同的促分裂原活化蛋白激酶激酶(MAPKK),每种具有独特的功能特性,其特征在于与特定的上游和下游伙伴进行通讯以形成独特的功能途径。这四种激酶属于一个家族,共有紧密相关的催化结构域。这四种相关的激酶如何分散发挥四种不同的功能作用?通常认为酶对特定底物的特异性在于催化结构域的差异。但是,许多激酶(包括MAPKK)具有模块化的相互作用结构域和基序,这些结构域和基序已显示在通过招募特定伴侣和复合物来阻止挖掘激酶的特异性方面起重要作用。在这里,我们通过询问是否可以使用募集相互作用来迫使其他MAPKK催化域发挥交配的MAPKK,Ste7的功能角色,来探讨催化域相互作用与募集相互作用在定义MAPKK的功能同一性方面的相对重要性。我们发现两个替代的MAPKKs,Pbs2和Mkk2,可以被迫在功能上替代交配的MAPKK Ste7,但前提是必须将适当的募集相互作用集嫁接到其催化结构域上。这些结果表明,在一个激酶家族中,募集相互作用可以在定义功能同一性中起主导作用,并且与一个模型相吻合,在该模型中,新的激酶功能可以通过将现有催化结构域与新的相互作用模块重组而产生。

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