Bone S
Institute of Molecular and Biomolecular Electronics, University of Wales Bangor, Gwynedd, U.K.
Biochim Biophys Acta. 1991 Jul 12;1078(3):336-8. doi: 10.1016/0167-4838(91)90153-q.
Protonic conduction studies are reported for lysozyme as a function of the number of bound water molecules. Lysozyme samples employing proton-injecting palladium black electrodes exhibited conductivities up to eight orders of magnitude greater than those retained between control (copper) electrodes. The results indicate that water involved in multiple hydrogen bond contact with the enzyme together with hydrogen bonded segments of the enzyme structure provide a hydrogen bond network which is capable of supporting considerable protonic conduction.
本文报道了溶菌酶的质子传导研究,该研究考察了质子传导与结合水分子数量之间的关系。使用注入质子的钯黑电极的溶菌酶样品所表现出的电导率,比对照(铜)电极之间测得的电导率高出多达八个数量级。结果表明,与酶形成多个氢键接触的水以及酶结构中形成氢键的片段共同构成了一个能够支持可观质子传导的氢键网络。