首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Identification of phosphorylation sites within the SH3 domains of Tec family tyrosine kinases.
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Identification of phosphorylation sites within the SH3 domains of Tec family tyrosine kinases.

机译:鉴定Tec家族酪氨酸激酶SH3结构域内的磷酸化位点。

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摘要

Tec family protein tyrosine kinases (TFKs) play a central role in hematopoietic cellular signaling. Initial activation takes place through specific tyrosine phosphorylation situated in the activation loop. Further activation occurs within the SH3 domain via a transphosphorylation mechanism, which for Bruton's tyrosine kinase (Btk) affects tyrosine 223. We found that TFKs phosphorylate preferentially their own SH3 domains, but differentially phosphorylate other member family SH3 domains, whereas non-related SH3 domains are not phosphorylated. We demonstrate that SH3 domains are good and reliable substrates. We observe that transphosphorylation is selective not only for SH3 domains, but also for dual SH3SH2 domains. However, the dual domain is phosphorylated more effectively. The major phosphorylation sites were identified as conserved tyrosines, for Itk Y180 and for Bmx Y215, both sites being homologous to the Y223 site in Btk. There is, however, one exception because the Tec-SH3 domain is phosphorylated at a non-homologous site, nevertheless a conserved tyrosine, Y206. Consistent with these findings, the 3D structures for SH3 domains point out that these phosphorylated tyrosines are located on the ligand-binding surface. Because a number of Tec family kinases are coexpressed in cells, it is possible that they could regulate the activity of each other through transphosphorylation.
机译:Tec家族蛋白酪氨酸激酶(TFKs)在造血细胞信号传导中起着核心作用。通过位于激活环中的特定酪氨酸磷酸化来进行初始激活。 SH3结构域内的进一步激活是通过转磷酸作用机制发生的,这对于布鲁顿酪氨酸激酶(Btk)影响酪氨酸223。不被磷酸化。我们证明SH3域是良好和可靠的底物。我们观察到,转磷酸作用不仅对SH3结构域具有选择性,而且对双SH3SH2结构域也具有选择性。但是,双结构域更有效地被磷酸化。对于Itk Y180和对于Bmx Y215,主要的磷酸化位点被鉴定为保守的酪氨酸,这两个位点均与Btk中的Y223位点同源。但是,有一个例外,因为Tec-SH3结构域在非同源位点被磷酸化,尽管如此,酪氨酸是保守的Y206。与这些发现一致,SH3结构域的3D结构指出这些磷酸化的酪氨酸位于配体结合表面上。由于许多Tec家族激酶在细胞中共表达,因此它们有可能通过转磷酸作用相互调节彼此的活性。

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