Synchrotron Radiation Research Section, MCL, National Cancer Institute, Argonne National Laboratory, Argonne, Illinois, 60439.
Department of Crystallography, Faculty of Chemistry, A. Mickiewicz University, Poznan, 61-614, Poland.
Protein Sci. 2018 Mar;27(3):643-652. doi: 10.1002/pro.3356. Epub 2017 Dec 20.
Helical structures are prevalent in biology. In the PDB, there are many examples where protein molecules are helically arranged, not only according to strict crystallographic screw axes but also according to approximate noncrystallographic screws. The preponderance of such screws is rather striking as helical arrangements in crystals must preserve an integer number of subunits per turn, while intuition and simple packing arguments would seem to favor fractional helices. The article provides insights into such questions, based on stereochemistry, trigonometry, and topology, and illustrates the findings with concrete PDB structures. Updated statistics of Sohncke space groups in the PDB are also presented.
螺旋结构在生物学中很常见。在 PDB 中,有许多蛋白质分子以螺旋方式排列的例子,不仅根据严格的晶体学螺旋轴,而且根据近似的非晶体学螺旋轴。这种螺旋的优势非常明显,因为晶体中的螺旋排列必须每转保持整数个亚基,而直觉和简单的包装论点似乎更倾向于分数螺旋。本文基于立体化学、三角学和拓扑学,对这些问题进行了深入探讨,并通过具体的 PDB 结构说明了研究结果。还介绍了 PDB 中 Sohncke 空间群的最新统计数据。