Waterborg J H
Division of Cell Biology and Biophysics, School of Basic Life Sciences, University of Missouri, Kansas City 64110-2499.
Electrophoresis. 1990 Aug;11(8):638-41. doi: 10.1002/elps.1150110811.
Carbamylation of cysteines 96 and 110 in histone H3 increases the electrophoretic mobility of this histone in acetic acid-urea-Triton X-100 polyacrylamide gels but has no effect in gels lacking Triton. Residue 96 appears to be a major determinant in the affinity of histone H3 for the nonionic detergent Triton. Carbamylation and carboxymethylation of cysteine 96 caused a major loss of the gel retardation caused by Triton. Carbamylation of cysteine 110 did not affect Triton binding but prevented ionization of the thiol side-chain moiety in the acetic acid-urea-Triton X-100 gel.
组蛋白H3中半胱氨酸96和110的氨甲酰化增加了该组蛋白在乙酸-尿素-曲拉通X-100聚丙烯酰胺凝胶中的电泳迁移率,但在缺乏曲拉通的凝胶中没有影响。残基96似乎是组蛋白H3与非离子去污剂曲拉通亲和力的主要决定因素。半胱氨酸96的氨甲酰化和羧甲基化导致曲拉通引起的凝胶阻滞作用大幅丧失。半胱氨酸110的氨甲酰化不影响曲拉通结合,但阻止了乙酸-尿素-曲拉通X-100凝胶中硫醇侧链部分的电离。