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通过生物物理和核磁共振方法探究葡萄球菌核酸酶1 - 79个残基片段的折叠能力和残余结构。

Probing the folding capacity and residual structures in 1-79 residues fragment of staphylococcal nuclease by biophysical and NMR methods.

作者信息

Wang Xu, Wang Min, Tong Yufeng, Shan Lu, Wang Jinfeng

机构信息

National Laboratory of Biomacromolecules, Center for Structural and Molecular Biology, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Beijing 100101, People's Republic of China.

出版信息

Biochimie. 2006 Oct;88(10):1343-55. doi: 10.1016/j.biochi.2006.05.002. Epub 2006 Jun 16.

Abstract

1-79 residues SNase fragment (SNase79) has chain length containing a sequence for helix alpha(1), omega-loop, beta(I)-sheet, and partial beta(II)-sheet of native SNase. The incomplete "beta-barrel" structural region of SNase79 makes this fragment to be interested in investigation of its conformation. For this study, we use CD, fluorescence, and NMR spectroscopy to probe the folding capacity and the residual structures in SNase79. The optical spectra obtained for SNase79 and its mutants reveal the presence of retained capacity for folding of the fragment. The NMR derived (13)C(alpha) secondary chemical shifts, (3)J(NH-Halpha) coupling constants, amide-proton temperature coefficients, interresidue NOEs, and (15)N relaxation data determine the intrinsic propensities for helix- and turn- or beta-sheet-like conformations of SNase79, which is not the result of stabilizing inter-molecular interactions by oligomerization effects. The residual turn- and helix-like structures may serve as potential local nucleation sites, whereas the residual beta(I)-sheet-like structure can be regarded as a potential non-local nucleation site in the folding of SNase79. The intrinsic local and non-local interactions in these potential initiation sites are insufficient to stabilize the folding of SNase79 due to the shortage of relevant long-range interactions from other part of the fragment. The conformational ensemble of SNase79 is a highly heterogeneous collection of interconverting conformations having transiently populated helix- and beta-sheet- or turn-like structures.

摘要

1 - 79个残基的核糖核酸酶片段(核糖核酸酶79)的链长包含天然核糖核酸酶的α(1)螺旋、ω环、β(I)片层和部分β(II)片层的序列。核糖核酸酶79不完整的“β桶”结构区域使得该片段成为研究其构象的有趣对象。在本研究中,我们使用圆二色光谱、荧光光谱和核磁共振光谱来探测核糖核酸酶79的折叠能力和残余结构。核糖核酸酶79及其突变体的光谱表明该片段具有保留的折叠能力。核磁共振得出的(13)Cα二级化学位移、(3)J(NH - Hα)耦合常数、酰胺质子温度系数、残基间的核Overhauser效应以及(15)N弛豫数据确定了核糖核酸酶79形成螺旋、转角或β片层样构象的内在倾向,这并非由寡聚化效应稳定分子间相互作用的结果。残余的转角样和螺旋样结构可能作为潜在的局部成核位点,而残余的β(I)片层样结构可被视为核糖核酸酶79折叠过程中的潜在非局部成核位点。由于该片段其他部分缺乏相关的长程相互作用,这些潜在起始位点中的内在局部和非局部相互作用不足以稳定核糖核酸酶79的折叠。核糖核酸酶79的构象集合是具有瞬态填充的螺旋、β片层或转角样结构的相互转化构象的高度异质集合。

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