Beard P
Cell. 1978 Nov;15(3):955-67. doi: 10.1016/0092-8674(78)90279-9.
Linear simian virus 40 (SV40) chromosomes were prepared by Eco R1 nuclease cleavage of the circular SV40 chromosomes released from virions with dithiothreitol at pH 9,8. Chromatin-DNA hybrids were constructed with segments of 3H-labeled, naked SV40 DNA covalently joined via the Eco R1-generated cohesive ends to segments of linear SV40 chromosome. Upon incubation of chromatin-DNA hybrids at 37 degrees C and moderate ionic strength, histones migrated onto the labeled DNA while retaining the nucleosome structure. This was shown first, by the pattern of micrococcal nuclease digestion of labeled DNA; second by nitrocellulose filter binding of labeled DNA after redigestion of the chromatin-DNA hybrids with Eco R1; and third, by examination of chromatin-DNA hybrids in the electron microscope. Migration was slow, being apparent after several hours. Parallel experiments in which naked DNA and chromosomes were mixed without joining showed no transfer of nucleosomal histones between DNA molecules. The kinetics of Eco R1 cleavage of the DNA in virion-derived SV40 chromosomes are also consistent with the notion that nucleosomal histones, in the absence of other proteins, can move on DNA.
通过用二硫苏糖醇在pH 9.8条件下从病毒粒子中释放出环状猿猴病毒40(SV40)染色体,并用Eco R1核酸酶切割来制备线性SV40染色体。染色质-DNA杂交体是用3H标记的裸SV40 DNA片段构建的,这些片段通过Eco R1产生的粘性末端与线性SV40染色体片段共价连接。在37℃和中等离子强度下孵育染色质-DNA杂交体时,组蛋白迁移到标记的DNA上,同时保留核小体结构。这首先通过标记DNA的微球菌核酸酶消化模式得以证明;其次通过用Eco R1对染色质-DNA杂交体重新消化后标记DNA与硝酸纤维素滤膜的结合得以证明;第三,通过在电子显微镜下检查染色质-DNA杂交体得以证明。迁移速度很慢,数小时后才明显。在不连接的情况下将裸DNA和染色体混合的平行实验表明,DNA分子之间没有核小体组蛋白的转移。病毒衍生的SV40染色体中DNA的Eco R1切割动力学也与这样一种观点一致,即核小体组蛋白在没有其他蛋白质的情况下可以在DNA上移动。