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鸡输卵管染色质的结构与功能研究。1. 用ECTHAM-纤维素色谱法进行分级分离及理化特性分析。

Studies on the structure and function of chick-oviduct chromatin. 1. Fractionation by ECTHAM-cellulose chromatography and physico-chemical characterization.

作者信息

Strätling W H, Van N T, O'Malley B W

出版信息

Eur J Biochem. 1976 Jul 15;66(3):423-33. doi: 10.1111/j.1432-1033.1976.tb10566.x.

Abstract

Chick oviduct chromatin was separated into a ribonucleoprotein fraction and two chromatin fractions (early and late eluting). We utilized a gentle procedure in which moderately hydrated chromatin was subjected to chromatography on a weak ionic-exchange resin (ECTHAM-cellulose) eluted with a combined pH-salt gradient. Chemical analysis of the early (fraction I) and late (fraction II) eluting fractions revealed that their histones were identical and their nonhistone proteins were markedly different. Control experiments showed that these differences were not due to protein rearrangements during chromatin preparation and/or fractionation. The physical properties of fraction I and II differed in certain aspects. The aggregation response of fraction I to increasing concentrations of monovalent cations was five times lower than that of fraction II but the aggregation response to divalent cations was identical. Thermal denaturation assays of DNAs isolated from fractions I and II revealed identical derivative profiles of hyperchromicity vs temperature, thereby indicating similar base composition in the two fractions. Circular dichroism, spectra of the purified DNAs isolated from both fractions showed identical B-type conformations. However, DNA renaturation kinetics analyzed by computer technique indicated that fraction I DNA contained less than half the amount of highly repetitive sequences as compared to either unfractionated chromatin or fraction II. Circular dichroism spectra of fraction I and II chromatins (at room temperature) showed significant differences in a wavelength region were only DNA is optically active (i.e. 255-320 nm). These results indicated that the DNA complexed to proteins in fraction II assumed a more C-type conformation than the DNA in fraction I. The differences in the circular dichroism spectra could not be accounted for by differences in the RNAs or protein chromophores contained in fraction I and fraction II. When the circular dichroism spectra of fraction I and II were recorded at 55 degrees C, the differences between the two fractions were abolished. These results were interpreted to mean that the differences in the DNA conformations found in fractions I and II were due to the differences in their nonhistone proteins. These proteins were effective in maintaining DNA conformation differences only when they were in their native form but not when heated to 55 degree C. Comparison of the sedimentation coefficients of fractions I and II with their calculated molecular weights suggested a more extended structure in fraction I as compared to a more compact structure in fraction II. Only small differences were observed between fraction I and fraction II with respect to either buoyant density analysis in a metrizamide gradient or in the number of phosphate charges accessible to polylysine.

摘要

鸡输卵管染色质被分离成一个核糖核蛋白组分和两个染色质组分(早期洗脱和晚期洗脱)。我们采用了一种温和的方法,即让适度水合的染色质在弱离子交换树脂(ECTHAM - 纤维素)上进行层析,并用组合的pH - 盐梯度洗脱。对早期洗脱组分(组分I)和晚期洗脱组分(组分II)的化学分析表明,它们的组蛋白相同,而非组蛋白显著不同。对照实验表明,这些差异并非由于染色体制备和/或分级分离过程中的蛋白质重排所致。组分I和组分II的物理性质在某些方面存在差异。组分I对单价阳离子浓度增加的聚集反应比组分II低五倍,但对二价阳离子的聚集反应相同。从组分I和II中分离出的DNA的热变性分析显示增色性与温度的导数曲线相同,从而表明这两个组分中的碱基组成相似。从两个组分中分离出的纯化DNA的圆二色光谱显示出相同的B型构象。然而,通过计算机技术分析的DNA复性动力学表明,与未分级的染色质或组分II相比,组分I的DNA中高度重复序列的含量不到其一半。组分I和II染色质(室温下)的圆二色光谱在只有DNA具有光学活性的波长区域(即255 - 320nm)显示出显著差异。这些结果表明,与组分II中的蛋白质复合的DNA比组分I中的DNA呈现出更C型的构象。圆二色光谱的差异不能用组分I和组分II中所含RNA或蛋白质发色团的差异来解释。当在55℃记录组分I和II的圆二色光谱时,两个组分之间的差异消失了。这些结果被解释为意味着在组分I和II中发现的DNA构象差异是由于它们的非组蛋白不同。这些蛋白质只有在其天然形式下才有效地维持DNA构象差异,而加热到55℃时则不然。将组分I和II的沉降系数与其计算的分子量进行比较表明,与组分II中更紧密的结构相比,组分I具有更伸展的结构。在甲泛葡胺梯度中的浮力密度分析或聚赖氨酸可接近的磷酸电荷数量方面,组分I和II之间仅观察到微小差异。

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