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Computational Models of Tandem Src Homology 2 Domain Interactions and Application to Phosphoinositide 3-Kinase

机译:串联Src同源2域相互作用和的计算模型。 应用于磷脂酰肌醇 3-激酶

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摘要

Intracellular signal transduction proteins typically utilize multiple interaction domains for proper targeting, and thus a broad diversity of distinct signaling complexes may be assembled. Considering the coordination of only two such domains, as in tandem Src homology 2 (SH2) domain constructs, gives rise to a kinetic scheme that is not adequately described by simple models used routinely to interpret in vitro binding measurements. To analyze the interactions between tandem SH2 domains and bisphosphorylated peptides, we formulated detailed kinetic models and applied them to the phosphoinositide 3-kinase p85 regulatory subunit/platelet-derived growth factor β-receptor system. Data for this system from different in vitro assay platforms, including surface plasmon resonance, competition binding, and isothermal titration calorimetry, were reconciled to estimate the magnitude of the cooperativity characterizing the sequential binding of the high and low affinity SH2 domains (C-SH2 and N-SH2, respectively). Compared with values based on an effective volume approximation, the estimated cooperativity is 3 orders of magnitude lower, indicative of significant structural constraints. Homodimerization of full-length p85 was found to be an alternative mechanism for high avidity binding to phosphorylated platelet-derived growth factor receptors, which would render the N-SH2 domain dispensable for receptor binding.
机译:细胞内信号转导蛋白通常利用多个相互作用域进行适当的靶向,因此可以组装各种不同的信号复合物。考虑到只有两个这样的结构域的协同作用,如串联Src同源性2(SH2)域构建体,产生了一个动力学方案,而该动力学方案没有被常规用于解释体外结合测量的简单模型充分描述。为了分析串联SH2域和双磷酸化肽之间的相互作用,我们建立了详细的动力学模型,并将其应用于磷酸肌醇3-激酶p85调节亚基/血小板衍生的生长因子β-受体系统。该系统的数据来自不同的体外测定平台,包括表面等离振子共振,竞争结合和等温滴定量热法,用于估计表征高亲和力和低亲和力SH2结构域(C-SH2和N-SH2)。与基于有效体积近似值的估计值相比,估计的协作性低3个数量级,表明存在明显的结构约束。发现全长p85均一化是 高亲和力与磷酸化结合的另一种机制 血小板衍生的生长因子受体,可提供N-SH2结构域 可用于受体结合。

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