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Structural Basis for the Regulation Mechanism of the Tyrosine Kinase CapB from Staphylococcus aureus

机译:金黄色葡萄球菌酪氨酸激酶CapB调控机制的结构基础

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摘要

Bacteria were thought to be devoid of tyrosine-phosphorylating enzymes. However, several tyrosine kinases without similarity to their eukaryotic counterparts have recently been identified in bacteria. They are involved in many physiological processes, but their accurate functions remain poorly understood due to slow progress in their structural characterization. They have been best characterized as copolymerases involved in the synthesis and export of extracellular polysaccharides. These compounds play critical roles in the virulence of pathogenic bacteria, and bacterial tyrosine kinases can thus be considered as potential therapeutic targets. Here, we present the crystal structures of the phosphorylated and unphosphorylated states of the tyrosine kinase CapB from the human pathogen Staphylococcus aureus together with the activator domain of its cognate transmembrane modulator CapA. This first high-resolution structure of a bacterial tyrosine kinase reveals a 230-kDa ring-shaped octamer that dissociates upon intermolecular autophosphorylation. These observations provide a molecular basis for the regulation mechanism of the bacterial tyrosine kinases and give insights into their copolymerase function.
机译:细菌被认为不含酪氨酸磷酸化酶。但是,最近在细菌中发现了几种与它们的真核对应物没有相似性的酪氨酸激酶。它们参与许多生理过程,但是由于其结构表征的缓慢进展,人们对其准确功能的了解仍然很少。它们被最好地表征为参与细胞外多糖的合成和输出的共聚酶。这些化合物在致病细菌的毒力中起关键作用,因此细菌酪氨酸激酶可被视为潜在的治疗靶标。在这里,我们介绍了来自人类病原体金黄色葡萄球菌的酪氨酸激酶CapB的磷酸化和未磷酸化状态的晶体结构,以及其同源跨膜调节剂CapA的激活域。细菌酪氨酸激酶的第一个高分辨率结构揭示了一个230 kDa的环状八聚体,该分子在分子间自磷酸化时会解离。这些发现为细菌酪氨酸激酶的调控机制提供了分子基础,并深入了解了它们的共聚合酶功能。

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