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Identification of an allosteric signaling network within Tec family kinases.

机译:Tec家族激酶内的变构信号网络的鉴定。

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The Tec family kinases are tyrosine kinases that function primarily in hematopoietic cells. The catalytic activity of the Tec kinases is positively influenced by the regulatory domains outside of the kinase domain. The current lack of a full-length Tec kinase structure leaves a void in our understanding of how these positive regulatory signals are transmitted to the kinase domain. Recently, a conserved structure within kinases, the 'regulatory spine', which assembles and disassembles as a kinase switches between its active and inactive states, has been identified. Here, we define the residues that comprise the regulatory spine within Tec kinases. Compared to previously characterized systems, the Tec kinases contain an extended regulatory spine that includes a conserved methionine within the C-helix and a conserved tryptophan within the Src homology 2-kinase linker of Tec kinases. This extended regulatory spine forms a conduit for transmitting the presence of the regulatory domains of Tec kinases to the catalytic domain. We further show that mutation of the gatekeeper residue at the edge of the regulatory spine stabilizes the regulatory spine, resulting in a constitutively active kinase domain. Importantly, the regulatory spine is preassembled in this gatekeeper mutant, rendering phosphorylation on the activation loop unnecessary for its activity. Moreover, we show that the disruption of the conserved electrostatic interaction between Bruton's tyrosine kinase R544 on the activation loop and Bruton's tyrosine kinase E445 on the C-helix also aids in the assembly of the regulatory spine. Thus, the extended regulatory spine is a key structure that is critical for maintaining the activity of Tec kinases.
机译:Tec家族激酶是酪氨酸激酶,主要在造血细胞中发挥作用。 Tec激酶的催化活性受到激酶域外部调节域的积极影响。目前缺乏全长Tec激酶结构,这在我们对这些阳性调控信号如何传递至激酶结构域的理解中留下了空白。最近,已经确定了激酶内的保守结构“调节脊柱”,该结构在激酶在其活跃状态和非活跃状态之间切换时进行组装和拆卸。在这里,我们定义了Tec激酶中包含调节脊柱的残基。与以前表征的系统相比,Tec激酶包含一个扩展的调节脊柱,该脊柱在C螺旋内包含一个保守的蛋氨酸,在Tec激酶的Src同源性2激酶连接子内包含一个保守的色氨酸。该延伸的调节脊柱形成用于将Tec激酶的调节结构域的存在传递至催化结构域的管道。我们进一步表明,在调节性脊柱的边缘,关守残基的突变稳定了调节性脊柱,从而导致了组成型活性激酶结构域。重要的是,在此网守突变体中预组装了调节脊柱,使激活环上的磷酸化对其活性而言是不必要的。此外,我们表明,激活环上的布鲁顿酪氨酸激酶R544与C螺旋上的布鲁顿酪氨酸激酶E445之间保守的静电相互作用的破坏也有助于调节脊柱的组装。因此,扩展的调节脊柱是关键结构,对于维持Tec激酶的活性至关重要。

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