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Protein activity regulation by conformational entropy.构象熵对蛋白质活性的调节。
Nature. 2012 Aug 9;488(7410):236-40. doi: 10.1038/nature11271.
2
WAXS studies of the structural diversity of hemoglobin in solution.溶液中血红蛋白结构多样性的 WAXS 研究。
J Mol Biol. 2011 May 20;408(5):909-21. doi: 10.1016/j.jmb.2011.02.062. Epub 2011 Mar 21.
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Probing protein side chain dynamics via 13C NMR relaxation.通过13C核磁共振弛豫探究蛋白质侧链动力学
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Protein dynamics and allostery: an NMR view.蛋白质动力学和变构:NMR 视角。
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The role of conformational entropy in molecular recognition by calmodulin.钙调蛋白分子识别中的构象熵作用。
Nat Chem Biol. 2010 May;6(5):352-8. doi: 10.1038/nchembio.347. Epub 2010 Apr 11.
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The role of dynamic conformational ensembles in biomolecular recognition.动态构象集合在生物分子识别中的作用。
Nat Chem Biol. 2009 Nov;5(11):789-96. doi: 10.1038/nchembio.232.
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AutoDock Vina: improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading.AutoDock Vina:通过新的评分函数、高效优化和多线程改进对接的速度和准确性。
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AutoDock4 and AutoDockTools4: Automated docking with selective receptor flexibility.AutoDock4 和 AutoDockTools4:具有选择性受体柔性的自动化对接。
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9
Solution and crystal structures of mRNA exporter Dbp5p and its interaction with nucleotides.信使核糖核酸输出蛋白Dbp5p的溶液结构和晶体结构及其与核苷酸的相互作用。
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Protein dynamics explain the allosteric behaviors of hemoglobin.蛋白质动力学解释了血红蛋白的变构行为。
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人血合蛋白的一氧化碳形式的溶液结构和动力学。

Solution structure and dynamics of human hemoglobin in the carbonmonoxy form.

机构信息

Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore.

出版信息

Biochemistry. 2013 Aug 27;52(34):5809-20. doi: 10.1021/bi4005683. Epub 2013 Aug 15.

DOI:10.1021/bi4005683
PMID:23901897
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4013309/
Abstract

The solution structure of human adult carbonmonoxy hemoglobin (HbCO A) was refined using stereospecifically assigned methyl groups and residual dipolar couplings based on our previous nuclear magnetic resonance structure. The tertiary structures of individual chains were found to be very similar to the X-ray structures, while the quaternary structures in solution at low salt concentrations resembled the X-ray R structure more than the R2 structure. On the basis of chemical shift perturbation by inositol hexaphosphate (IHP) titration and docking, we identified five possible IHP binding sites in HbCO A. Amide-water proton exchange experiments demonstrated that αThr38 located in the α1β2 interface and several loop regions in both α- and β-chains were dynamic on the subsecond time scale. Side chain methyl dynamics revealed that methyl groups in the α1β2 interface were dynamic, but those in the α1β1 interface were quite rigid on the nanosecond to picosecond and millisecond to microsecond time scales. All the data strongly suggest a dynamic α1β2 interface that allows conformational changes among different forms (like T, R, and R2) easily in solution. Binding of IHP to HbCO A induced small structural and dynamic changes in the α1β2 interface and the regions around the hemes but did not increase the conformational entropy of HbCO A. The binding also caused conformational changes on the millisecond time scale, very likely arising from the relative motion of the α1β1 dimer with respect to the α2β2 dimer. Heterotropic effectors like IHP may change the oxygen affinity of Hb through modulating the relative motion of the two dimers and then further altering the structure of heme binding regions.

摘要

基于先前的核磁共振结构,我们使用特异性分配的甲基和残余偶极耦合,对人成人碳氧血红蛋白(HbCO A)的溶液结构进行了精修。发现各个链的三级结构与 X 射线结构非常相似,而在低盐浓度下的溶液中的四级结构更类似于 X 射线 R 结构,而不是 R2 结构。根据肌醇六磷酸(IHP)滴定和对接的化学位移扰动,我们在 HbCO A 中鉴定了五个可能的 IHP 结合位点。酰胺-水质子交换实验表明,位于α1β2 界面的αThr38 和两条链中的几个环区在亚秒时间尺度上是动态的。侧链甲基动力学表明,α1β2 界面的甲基基团是动态的,但在纳秒到皮秒和毫秒到微秒时间尺度上,α1β1 界面的甲基基团非常刚性。所有数据强烈表明α1β2 界面具有动态性,允许溶液中不同形式(如 T、R 和 R2)之间的构象变化容易发生。IHP 与 HbCO A 的结合诱导了α1β2 界面和血红素周围区域的微小结构和动力学变化,但没有增加 HbCO A 的构象熵。结合还引起了毫秒时间尺度上的构象变化,很可能是由于α1β1 二聚体相对于α2β2 二聚体的相对运动引起的。变构效应物(如 IHP)可能通过调节两个二聚体的相对运动,从而进一步改变血红素结合区域的结构,来改变血红蛋白的氧亲和力。