National Research Council of Canada, Prairie Regional Laboratory, Saskatoon, Saskatchewan S7N 0W9.
Plant Physiol. 1978 Apr;61(4):515-20. doi: 10.1104/pp.61.4.515.
Binding and uptake of exogenous DNA by nuclei isolated from Glycine max L. Merr were studied using (3)H-labeled single-stranded DNA of bacteriophage fd. A comparison of single-stranded with double-stranded DNA for binding and uptake by nuclei was also made.Isolated nuclei were incubated with (3)H-labeled single-stranded bacteriophage fd DNA. Poly-l-lysine or DEAE-dextran at 0.1 and 1 mug/ml stimulated DNA binding. On the other hand, poly-l-lysine at 1 and 5 mug/ml increased DNA uptake but DEAE-dextran did not. Ten to 20 mm Ca and Mg ions were required for DNA uptake. EDTA (1-20 mm) did not differ from the control or the low levels of Ca or Mg ions. These observations on single-stranded fd DNA differed from those obtained with double-stranded DNA of Salmonella typhimurium. Kinetics of single-stranded DNA binding and uptake also deviated from that of double-stranded DNA.Analyses of nuclei-bound DNA by sucrose density gradient and CsCI density gradient centrifugation revealed extensive DNA degradation during a 45-minute incubation period. Poly-l-lysine protected against rapid degradation of bound DNA. DEAE-dextran enhanced DNA binding, but bound DNA was cleaved into much smaller polymers than those detected in control experiments or in the presence of poly-l-lysine. Sucrose density gradient and CsCI density gradient centrifugation analyses on DNA taken up by nuclei also showed extensive DNA degradation. Poly-l-lysine slightly inhibited DNA degradation, but DEAE-dextran appeared to enhance degradation of incorporated DNA. Moreover, nonbound DNA in the incubation medium was completely degraded within a 20-minute incubation period.
从 Glycine max L. Merr 中分离出的细胞核对(3)H 标记的单链噬菌体 fd DNA 的结合和摄取进行了研究。还比较了单链和双链 DNA 对细胞核的结合和摄取。分离的细胞核与(3)H 标记的单链噬菌体 fd DNA 孵育。0.1 和 1 μg/ml 的聚赖氨酸或 DEAE-葡聚糖刺激 DNA 结合。另一方面,1 和 5 μg/ml 的聚赖氨酸增加了 DNA 摄取,但 DEAE-葡聚糖没有。10 到 20 mM 的 Ca 和 Mg 离子是 DNA 摄取所必需的。1-20 mM 的 EDTA 与对照或低水平的 Ca 或 Mg 离子没有区别。这些关于单链 fd DNA 的观察结果与从伤寒沙门氏菌获得的双链 DNA 不同。单链 DNA 结合和摄取的动力学也偏离了双链 DNA。通过蔗糖密度梯度和 CsCI 密度梯度离心分析细胞核结合的 DNA 发现,在 45 分钟孵育期间 DNA 广泛降解。聚赖氨酸可防止结合 DNA 的快速降解。DEAE-葡聚糖增强了 DNA 的结合,但结合的 DNA 被切割成比对照实验或存在聚赖氨酸时更小的聚合物。细胞核摄取的 DNA 的蔗糖密度梯度和 CsCI 密度梯度离心分析也显示出广泛的 DNA 降解。聚赖氨酸略微抑制 DNA 降解,但 DEAE-葡聚糖似乎增强了掺入 DNA 的降解。此外,孵育培养基中非结合的 DNA 在 20 分钟孵育期内完全降解。