首页> 外文期刊>Journal of Medicinal Chemistry >Homology modeling of human Fyn kinase structure: discovery of rosmarinic acid as a new Fyn kinase inhibitor and in silico study of its possible binding modes.
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Homology modeling of human Fyn kinase structure: discovery of rosmarinic acid as a new Fyn kinase inhibitor and in silico study of its possible binding modes.

机译:人Fyn激酶结构的同源性建模:迷迭香酸作为一种新的Fyn激酶抑制剂的发现以及其可能的结合方式的计算机研究。

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摘要

Tyrosine phosphorylation represents a unique signaling process that controls metabolic pathways, cell activation, growth and differentiation, membrane transport, apoptosis, neural, and other functions. We present here the three-dimensional structure of Fyn tyrosine kinase, a Src-family enzyme involved in T-cell receptor signal transduction. The structure of Fyn was modeled for homology using the Sybyl-Composer suite of programs for modeling. Procheck and Prosa II programs showed the high quality of the obtained three-dimensional model. Rosmarinic acid, a secondary metabolite of herbal plants, was discovered as a new Fyn kinase inhibitor using immunochemical and in silico methods. Two possible binding modes of rosmarinic acid were evaluated here, i.e., near to or in the ATP-binding site of kinase domain of Fyn. Enzyme kinetic experiments revealed that Fyn is inhibited by a linear-mixed noncompetitive mechanism of inhibition by rosmarinic acid. This indicates that rosmarinic acid binds to the second "non-ATP" binding site of the Fyn tyrosine kinase.
机译:酪氨酸磷酸化代表独特的信号传导过程,可控制代谢途径,细胞激活,生长和分化,膜转运,凋亡,神经和其他功能。我们在这里介绍Fyn酪氨酸激酶,参与T细胞受体信号转导的Src家族酶的三维结构。使用Sybyl-Composer套件的建模程序对Fyn的结构进行同源性建模。 Procheck和Prosa II程序显示了所获得的三维模型的高质量。迷迭香酸是草药植物的次生代谢产物,已通过免疫化学和计算机模拟方法被发现是一种新型的Fyn激酶抑制剂。此处评价迷迭香酸的两种可能的结合模式,即接近或位于Fyn的激酶结构域的ATP结合位点。酶动力学实验表明Fyn被迷迭香酸的线性混合非竞争性抑制机制所抑制。这表明迷迭香酸结合到Fyn酪氨酸激酶的第二个“非ATP”结合位点。

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