Jackson V
Biochemistry. 1987 Apr 21;26(8):2325-34. doi: 10.1021/bi00382a038.
We have reinvestigated studies using Lomant's reagent to cross-link newly synthesized density-labeled histones into octameric complexes to determine the nature of histone deposition. The analysis has additionally included procedures for reversal of the cross-link in order to analyze the individual histones in these complexes. These studies indicate that density-labeled, newly synthesized histones form hybrid octameric structures composed of both new and old histones. These studies also suggest that previous interpretations by other investigators for the production of homogeneous complexes (100% dense octamer containing 100% new histones) are misinterpretations due to the presence of non-histone protein that contaminates the preparation, even under conditions where much of this non-histone protein is removed by use of ion-exchange resins. These non-histone proteins can be fractionated on density gradients as un-cross-linked proteins with molecular weights that mimic those of cross-linked histone complexes.
我们重新研究了使用洛曼试剂将新合成的密度标记组蛋白交联成八聚体复合物以确定组蛋白沉积性质的研究。分析还包括交联逆转程序,以便分析这些复合物中的单个组蛋白。这些研究表明,密度标记的新合成组蛋白形成了由新老组蛋白组成的杂合八聚体结构。这些研究还表明,其他研究人员之前对产生均匀复合物(100%致密八聚体,含100%新组蛋白)的解释是错误的,因为存在污染制剂的非组蛋白,即使在使用离子交换树脂去除大部分这种非组蛋白的条件下也是如此。这些非组蛋白可以在密度梯度上作为未交联的蛋白质进行分级分离,其分子量与交联组蛋白复合物的分子量相似。