Ellison M J, Pulleyblank D E
Can J Biochem. 1982 Jun;60(6):651-8. doi: 10.1139/o82-080.
We have examined the ability of a topoisomerase purified from chicken erythrocyte nuclei to mediate nucleosome core assembly in vitro at physiological ionic strength (0.15 M NaCl). Although we have detected limited amounts of spontaneously assembled nucleosome cores at this salt concentration, the addition of this topoisomerase does not increase the amount of assembly observed. Nucleosome assembly was assayed by quantitating the amount of core particle length DNA accumulated with time upon the nuclease digestion of histone-DNA complexes. In addition, the amount of negative supercoils introduced into relaxed closed circular DNA upon nucleosome core particle assembly was determined. Correctly assembled complexes do not protect more DNA from nuclease digestion than random histone-DNA complexes but shift the heterogeneous size distribution of protected fragments to a more homogeneous distribution centred around 145 base pairs. Under our conditions of nucleosome assembly, a second histone-DNA complex which is distinct from the nucleosome core can be detected under physiological ionic strength conditions. This particle does not form in high salt assembly experiments. Similarly, the assembly of this particle is unaffected by the presence or absence of topoisomerase.
我们检测了从鸡红细胞核中纯化得到的一种拓扑异构酶在生理离子强度(0.15M NaCl)下体外介导核小体核心组装的能力。尽管在此盐浓度下我们检测到了有限量的自发组装核小体核心,但添加这种拓扑异构酶并未增加观察到的组装量。通过对组蛋白 - DNA复合物进行核酸酶消化后随时间积累的核心颗粒长度DNA量进行定量来测定核小体组装。此外,还测定了核小体核心颗粒组装时引入到松弛闭环DNA中的负超螺旋量。正确组装的复合物相比随机组蛋白 - DNA复合物并不能保护更多的DNA免受核酸酶消化,但会将受保护片段的异质大小分布转变为以145个碱基对为中心的更均匀分布。在我们的核小体组装条件下,在生理离子强度条件下可以检测到一种不同于核小体核心的第二组蛋白 - DNA复合物。这种颗粒在高盐组装实验中不形成。同样,这种颗粒的组装不受拓扑异构酶存在与否的影响。