Smith H C, Ochs R L, Lin D, Chinault A C
Department of Medicine, Baylor College of Medicine, Houston, TX 77030.
Mol Cell Biochem. 1987 Sep;77(1):49-61. doi: 10.1007/BF00230150.
We have directly compared two independently published methods for isolating operationally defined nuclear matrices by studying EM ultrastructure, protein composition and distribution of replicating DNA. Nuclear matrices prepared by extraction with 2 M NaCl consisted of fibrous pore complex lamina, residual fibrillar and granular components of nucleoli and interchromatin granules, and an extensive anastomosing internal fibrous network. These matrices were enriched in high molecular weight nonhistone proteins but were virtually devoid of histones. Consistent with previously published data, newly-replicated DNA was resistant to this high salt extraction. Nuclear matrices prepared by extraction of nuclei with 25 mM lithium 3,5-diiodosalicylate, LIS, also contained fibrous pore complex lamina, but lacked morphologically distinct residual nucleoli and were markedly depleted in internal structure. The reduced amounts and complexity of proteins associated with the LIS matrix were consistent with the ultrastructural data. Moreover, much less newly-replicated DNA was recovered in LIS matrices. The data show that LIS dissociates nuclear ultrastructure and extracts both protein and DNA in proportion to the concentration used, regardless of whether nuclei or high salt nuclear matrices are used as starting material. While the data suggest that LIS may not necessarily be an optimal reagent for preparing nuclear matrices containing internal structural elements from all tissue sources, it may be useful for selectively solubilizing and analyzing components of the nuclear matrix.
通过研究电子显微镜超微结构、蛋白质组成和复制DNA的分布,我们直接比较了两种独立发表的用于分离可操作定义的核基质的方法。用2M NaCl提取制备的核基质由纤维状孔复合体薄片、核仁以及染色质间颗粒的残余纤维状和颗粒状成分,以及广泛吻合的内部纤维网络组成。这些基质富含高分子量非组蛋白,但几乎不含组蛋白。与先前发表的数据一致,新复制的DNA对这种高盐提取具有抗性。用25mM 3,5-二碘水杨酸锂(LIS)提取细胞核制备的核基质也含有纤维状孔复合体薄片,但缺乏形态上明显的残余核仁,并且内部结构明显减少。与LIS基质相关的蛋白质数量和复杂性降低与超微结构数据一致。此外,在LIS基质中回收的新复制DNA要少得多。数据表明,无论以细胞核还是高盐核基质作为起始材料,LIS都会解离核超微结构,并按所用浓度比例提取蛋白质和DNA。虽然数据表明LIS不一定是从所有组织来源制备含有内部结构元件的核基质的最佳试剂,但它可能有助于选择性地溶解和分析核基质的成分。