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本文引用的文献

1
Structural disorder within the measles virus nucleoprotein and phosphoprotein.麻疹病毒核蛋白和磷蛋白内的结构紊乱。
Protein Pept Lett. 2010 Aug;17(8):961-78. doi: 10.2174/092986610791498894.
2
Conformational analysis of the partially disordered measles virus N(TAIL)-XD complex by SDSL EPR spectroscopy.通过 SDSL EPR 光谱法对部分无序的麻疹病毒 N(TAIL)-XD 复合物进行构象分析。
Biophys J. 2010 Mar 17;98(6):1055-64. doi: 10.1016/j.bpj.2009.11.036.
3
The effects of alpha-helical structure and cyanylated cysteine on each other.α-螺旋结构和氰化半胱氨酸对彼此的影响。
J Phys Chem B. 2010 Apr 15;114(14):4931-6. doi: 10.1021/jp101447r.
4
Cyanylated Cysteine: A Covalently Attached Vibrational Probe of Protein-Lipid Contacts.氰化半胱氨酸:一种共价连接的蛋白质-脂质接触振动探针。
J Phys Chem Lett. 2010 Mar 4;1(5):850-855. doi: 10.1021/jz1000177. Epub 2010 Feb 12.
5
5-Cyanotryptophan as an Infrared Probe of Local Hydration Status of Proteins.5-氰基色氨酸作为蛋白质局部水合状态的红外探针
Chem Phys Lett. 2009 Sep 1;478(4):249-253. doi: 10.1016/j.cplett.2009.07.058.
6
Solution structure of the C-terminal X domain of the measles virus phosphoprotein and interaction with the intrinsically disordered C-terminal domain of the nucleoprotein.麻疹病毒磷蛋白 C 末端 X 结构域的溶液结构及其与核蛋白固有无序 C 末端结构域的相互作用。
J Mol Recognit. 2010 Sep-Oct;23(5):435-47. doi: 10.1002/jmr.1010.
7
FTIR analysis of GPCR activation using azido probes.使用叠氮探针的G蛋白偶联受体激活的傅里叶变换红外光谱分析。
Nat Chem Biol. 2009 Jun;5(6):397-9. doi: 10.1038/nchembio.167. Epub 2009 Apr 26.
8
Interaction between the C-terminal domains of N and P proteins of measles virus investigated by NMR.通过核磁共振研究麻疹病毒N蛋白和P蛋白C末端结构域之间的相互作用。
FEBS Lett. 2009 Apr 2;583(7):1084-9. doi: 10.1016/j.febslet.2009.03.004. Epub 2009 Mar 9.
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Biophysical characterization of intrinsically disordered proteins.内在无序蛋白质的生物物理特性分析
Curr Opin Struct Biol. 2009 Feb;19(1):23-30. doi: 10.1016/j.sbi.2008.12.004. Epub 2009 Jan 21.
10
Linking folding and binding.连接折叠与结合
Curr Opin Struct Biol. 2009 Feb;19(1):31-8. doi: 10.1016/j.sbi.2008.12.003. Epub 2009 Jan 20.

通过氰基化半胱氨酸的振动光谱研究麻疹病毒核蛋白无规则卷曲 C 末端结构的转变。

Probing structural transitions in the intrinsically disordered C-terminal domain of the measles virus nucleoprotein by vibrational spectroscopy of cyanylated cysteines.

机构信息

Department of Chemistry, Haverford College, Haverford, Pennsylvania, USA.

出版信息

Biophys J. 2010 Sep 8;99(5):1676-83. doi: 10.1016/j.bpj.2010.06.060.

DOI:10.1016/j.bpj.2010.06.060
PMID:20816082
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2931715/
Abstract

Four single-cysteine variants of the intrinsically disordered C-terminal domain of the measles virus nucleoprotein (N(TAIL)) were cyanylated at cysteine and their infrared spectra in the C triple bond N stretching region were recorded both in the absence and in the presence of one of the physiological partners of N(TAIL), namely the C-terminal X domain (XD) of the viral phosphoprotein. Consistent with previous studies showing that XD triggers a disorder-to-order transition within N(TAIL), the C triple bond N stretching bands of the infrared probe were found to be significantly affected by XD, with this effect being position-dependent. When the cyanylated cysteine side chain is solvent-exposed throughout the structural transition, its changing linewidth reflects a local gain of structure. When the probe becomes partially buried due to binding, its frequency reports on the mean hydrophobicity of the microenvironment surrounding the labeled side chain of the bound form. The probe moiety is small compared to other common covalently attached spectroscopic probes, thereby minimizing possible steric hindrance/perturbation at the binding interface. These results show for the first time to our knowledge the suitability of site-specific cysteine mutagenesis followed by cyanylation and infrared spectroscopy to document structural transitions occurring within intrinsically disordered regions, with regions involved in binding and folding being identifiable at the residue level.

摘要

四种单半胱氨酸变异体的麻疹病毒核蛋白(N(TAIL))无规则的 C 末端结构域被氰基化半胱氨酸,它们的红外光谱在 C 三键 N 伸缩区记录在缺乏和存在的生理伙伴之一的 N(TAIL),即病毒磷蛋白的 C 末端 X 结构域(XD)。与先前的研究一致,表明 XD 触发在 N(TAIL)内的无序到有序的转变,发现 C 三键 N 伸展带的红外探针受到 XD 的显著影响,这种影响是位置依赖的。当氰基化半胱氨酸侧链在整个结构转变中暴露于溶剂中时,其变化的线宽反映了局部结构的增加。当由于结合而使探针部分掩埋时,其频率报告了围绕结合形式标记侧链的微环境的平均疏水性。探针部分与其他常见的共价连接的光谱探针相比较小,从而在结合界面处最小化可能的空间位阻/干扰。这些结果首次表明,我们知道适合于通过氰基化和红外光谱对结构转变进行位点特异性半胱氨酸诱变,这些结构转变发生在无规则的区域内,涉及结合和折叠的区域可以在残基水平上识别。