Pijning Aster E, Hogg Philip
The Centenary Institute, NHMRC Clinical Trials Centre, Sydney Medical School, University of Sydney, Sydney, NSW, Australia.
Methods Mol Biol. 2019;1967:1-8. doi: 10.1007/978-1-4939-9187-7_1.
Protein disulphide bonds are the links between pairs of cysteine residues in the polypeptide chain. These bonds are classified based on the sign of the five dihedral angles that define the cystine residue. Twenty disulphide conformations are possible using this convention and all 20 are represented in protein structures. Force distribution analysis of the pairwise forces between the cysteine residues of the different conformations identified 2 of the 20 as having significant strain: the -RHstaple and -/+RHhook disulphide bonds. These two disulphide conformations are associated with allosteric function in proteins. An online tool is available that provides a comprehensive analysis of disulphide bonds in protein structures, including conformation, strain energy, solvent accessibility and secondary structures that the disulphide links.
蛋白质二硫键是多肽链中半胱氨酸残基对之间的连接。这些键根据定义胱氨酸残基的五个二面角的符号进行分类。按照这种惯例,有20种二硫键构象是可能的,并且所有20种都存在于蛋白质结构中。对不同构象的半胱氨酸残基之间的成对作用力进行的力分布分析确定,20种构象中有2种具有显著应变:-RH订书钉型和-/+RH钩型二硫键。这两种二硫键构象与蛋白质的变构功能相关。有一个在线工具可用于对蛋白质结构中的二硫键进行全面分析,包括构象、应变能、溶剂可及性以及二硫键连接的二级结构。