无规线圈
回转半径
指数
幂律
回转
缩放比例
结晶学
化学
排除体积
小角度散射
航程(航空)
聚合物
散射
热力学
物理
核磁共振
材料科学
圆二色性
数学
统计
光学
几何学
复合材料
哲学
语言学
作者
Jonathan E. Kohn,Ian S. Millett,Jaby Jacob,Bojan Žagrović,Thomas M. Dillon,Nikolina Cingel,Robin S. Dothager,Söenke Seifert,P. Thiyagarajan,Tobin R. Sosnick,M. Zahid Hasan,Vijay S. Pande,Ingo Ruczinski,Sebastian Doniach,Kevin W. Plaxco
标识
DOI:10.1073/pnas.0403643101
摘要
Spectroscopic studies have identified a number of proteins that appear to retain significant residual structure under even strongly denaturing conditions. Intrinsic viscosity, hydrodynamic radii, and small-angle x-ray scattering studies, in contrast, indicate that the dimensions of most chemically denatured proteins scale with polypeptide length by means of the power-law relationship expected for random-coil behavior. Here we further explore this discrepancy by expanding the length range of characterized denatured-state radii of gyration ( R G ) and by reexamining proteins that reportedly do not fit the expected dimensional scaling. We find that only 2 of 28 crosslink-free, prosthetic-group-free, chemically denatured polypeptides deviate significantly from a power-law relationship with polymer length. The R G of the remaining 26 polypeptides, which range from 16 to 549 residues, are well fitted ( r 2 = 0.988) by a power-law relationship with a best-fit exponent, 0.598 ± 0.028, coinciding closely with the 0.588 predicted for an excluded volume random coil. Therefore, it appears that the mean dimensions of the large majority of chemically denatured proteins are effectively indistinguishable from the mean dimensions of a random-coil ensemble.
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