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多配体结合蛋白的动力学调控

Kinetic regulation of multi-ligand binding proteins.

作者信息

Salakhieva Diana V, Sadreev Ildar I, Chen Michael Z Q, Umezawa Yoshinori, Evstifeev Aleksandr I, Welsh Gavin I, Kotov Nikolay V

机构信息

Kazan (Volga Region) Federal University, 18 Kremlyovskaya St., 420008, Kazan, Russia.

Centre for Systems, Dynamics and Control, College of Engineering, Mathematics and Physical Sciences, University of Exeter, Harrison Building, North Park Road, Exeter, EX4 4QF, UK.

出版信息

BMC Syst Biol. 2016 Apr 18;10:32. doi: 10.1186/s12918-016-0277-0.

Abstract

BACKGROUND

Second messengers, such as calcium, regulate the activity of multisite binding proteins in a concentration-dependent manner. For example, calcium binding has been shown to induce conformational transitions in the calcium-dependent protein calmodulin, under steady state conditions. However, intracellular concentrations of these second messengers are often subject to rapid change. The mechanisms underlying dynamic ligand-dependent regulation of multisite proteins require further elucidation.

RESULTS

In this study, a computational analysis of multisite protein kinetics in response to rapid changes in ligand concentrations is presented. Two major physiological scenarios are investigated: i) Ligand concentration is abundant and the ligand-multisite protein binding does not affect free ligand concentration, ii) Ligand concentration is of the same order of magnitude as the interacting multisite protein concentration and does not change. Therefore, buffering effects significantly influence the amounts of free ligands. For each of these scenarios the influence of the number of binding sites, the temporal effects on intermediate apo- and fully saturated conformations and the multisite regulatory effects on target proteins are investigated.

CONCLUSIONS

The developed models allow for a novel and accurate interpretation of concentration and pressure jump-dependent kinetic experiments. The presented model makes predictions for the temporal distribution of multisite protein conformations in complex with variable numbers of ligands. Furthermore, it derives the characteristic time and the dynamics for the kinetic responses elicited by a ligand concentration change as a function of ligand concentration and the number of ligand binding sites. Effector proteins regulated by multisite ligand binding are shown to depend on ligand concentration in a highly nonlinear fashion.

摘要

背景

第二信使,如钙离子,以浓度依赖的方式调节多位点结合蛋白的活性。例如,在稳态条件下,钙离子结合已被证明能诱导钙依赖性蛋白钙调蛋白的构象转变。然而,这些第二信使的细胞内浓度常常会迅速变化。多位点蛋白动态配体依赖性调节的潜在机制需要进一步阐明。

结果

在本研究中,我们对多位点蛋白动力学对配体浓度快速变化的响应进行了计算分析。研究了两种主要的生理情况:i)配体浓度丰富,且配体与多位点蛋白的结合不影响游离配体浓度;ii)配体浓度与相互作用的多位点蛋白浓度处于同一数量级且不变。因此,缓冲效应显著影响游离配体的量。针对每种情况,研究了结合位点数量的影响、对中间脱辅基和完全饱和构象的时间效应以及对靶蛋白的多位点调节效应。

结论

所开发的模型允许对浓度和压力跃变依赖性动力学实验进行新颖而准确的解释。所提出的模型预测了与可变数量配体结合的多位点蛋白构象的时间分布。此外,它还推导了配体浓度变化引发的动力学响应的特征时间和动力学,作为配体浓度和配体结合位点数量的函数。由多位点配体结合调节的效应蛋白显示出以高度非线性方式依赖于配体浓度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b5e/4835871/17bb64db5496/12918_2016_277_Fig1_HTML.jpg

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