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Regulatory Domains of Snf1-Activating Kinases Determine Pathway Specificity

机译:Snf1激活激酶的调节域决定途径特异性。

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In Saccharomyces cerevisiae, the Snf1 kinase can be activated by any one of three upstream kinases, Sak1, Tos3, or Elm1. All three Snf1-activating kinases contain serine/threonine kinase domains near their N termini and large C-terminal domains with little sequence conservation and previously unknown function. Deletion of the C-terminal domains of Sak1 and Tos3 greatly reduces their ability to activate the Snf1 pathway. In contrast, deletion of the Elm1 C-terminal domain has no effect on Snf1 signaling but abrogates the ability of Elm1 to participate in the morphogenetic-checkpoint signaling pathway. Thus, the C-terminal domains of Sak1, Tos3, and Elm1 help to determine pathway specificity. Additional deletion mutants of the Sak1 kinase revealed that the N terminus of the protein is essential for Snf1 signaling. The deletion of 43 amino acids from within the N terminus of Sak1 (residues 87 to 129) completely blocks Snf1 signaling and activation loop phosphorylation in vivo. The Sak1 kinase domain (lacking both N-terminal and C-terminal domains) is catalytically active and specific in vitro but is unable to promote Snf1 signaling in vivo when expressed at normal levels. Our studies indicate that the kinase domains of the Snf1-activating kinases are not sufficient by themselves for their proper function and that the nonconserved N-terminal and C-terminal domains are critical for the biological activities of these kinases.
机译:在啤酒酵母中,Snf1激酶可以被三种上游激酶Sak1,Tos3或Elm1中的任何一种激活。所有这三个Snf1激活激酶在其N末端附近都含有丝氨酸/苏氨酸激酶结构域,而C末端结构域却较大,几乎没有序列保守性,而且功能未知。 Sak1和Tos3的C末端域的删除大大降低了它们激活Snf1途径的能力。相反,Elm1 C末端结构域的删除对Snf1信号传导没有影响,但消除了Elm1参与形态发生检查点信号传导途径的能力。因此,Sak1,Tos3和Elm1的C末端结构域有助于确定途径特异性。 Sak1激酶的其他缺失突变体表明,该蛋白的N端对于Snf1信号传导至关重要。从Sak1的N末端(残基87至129)内删除43个氨基酸可完全阻断Snf1信号转导和体内激活环磷酸化。 Sak1激酶域(缺少N端和C端域)在体外具有催化活性和特异性,但是当以正常水平表达时,不能在体内促进Snf1信号传导。我们的研究表明,Snf1激活激酶的激酶结构域本身不足以发挥其正常功能,并且非保守的N端和C端结构域对于这些激酶的生物学活性至关重要。

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