Lee Y C, Yaple R A, Baldridge R, Kirsch M, Himes R H
Biochim Biophys Acta. 1981 Nov 30;671(1):71-7. doi: 10.1016/0005-2795(81)90095-7.
The self-assembly of bovine brain tubulin into microtubules is inhibited by low molar ratios of 1-fluoro-2,4-dinitrobezene (FDNB). Binding studies using [14C]FDNB indicate that the incorporation of between one and two dinitrophenyl groups is sufficient to inhibit assembly completely, although more dinitrophenyl groups can be incorporated using higher FDNB/tubulin ratios. Dinitrophenyltubulin, under assembly conditions, tends to assemble into amorphous aggregates. Thiolysis by 2-mercaptoethanol removes the dinitrophenyl moieties. Paper chromatography and high-voltage electrophoresis of acid-hydrolyzed modified tubulin containing one dinitrophenyl group identified the residue as S-dinitrophenylcysteine. The beta-monomer of tubulin is preferentially modified at low FDNB/tubulin ratios. The reaction with FDNB is greatly reduced when tubulin is in polymerized form. FDNB reduces the colchicine binding activity but does not affect the Mg(II) content of the protein.
低摩尔比的1-氟-2,4-二硝基苯(FDNB)可抑制牛脑微管蛋白自组装成微管。使用[14C]FDNB进行的结合研究表明,掺入一到两个二硝基苯基足以完全抑制组装,尽管使用更高的FDNB/微管蛋白比例可以掺入更多的二硝基苯基。在组装条件下,二硝基苯基微管蛋白倾向于组装成无定形聚集体。2-巯基乙醇进行的硫解作用可去除二硝基苯基部分。对含有一个二硝基苯基的酸水解修饰微管蛋白进行纸层析和高压电泳,鉴定出该残基为S-二硝基苯基半胱氨酸。在低FDNB/微管蛋白比例下,微管蛋白的β单体优先被修饰。当微管蛋白呈聚合形式时,与FDNB的反应会大大降低。FDNB会降低秋水仙碱结合活性,但不影响蛋白质的Mg(II)含量。