首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Structure and function of rat liver polysome populations. I. Complexity frequency distribution and degree of uniqueness of free and membrane-bound polysomal polyadenylate-containing RNA populations
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Structure and function of rat liver polysome populations. I. Complexity frequency distribution and degree of uniqueness of free and membrane-bound polysomal polyadenylate-containing RNA populations

机译:大鼠肝多核糖体群体的结构和功能。 I.游离和膜结合的含多聚体多腺苷酸的RNA群体的复杂性频率分布和唯一性程度

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摘要

Free and membrane-bound polysomes were isolated from rat liver in high yields with minimal degradation, cross-contamination, or contamination by nuclear or nonpolysomal cytoplasmic ribonucleoprotein. Poly(A)+ RNA fractions isolated from free and bound polysomal RNA (poly(A)+ RNAfree and poly(A)+ RNAbound) by oligo(dT) cellulose chromatography exhibited number-average lengths of 1,600 and 1,200 nucleotides, respectively, on formamide sucrose gradients. Poly(A)+ RNAfree and poly(A)+ RNAbound contain 9.1 +/- 0.55 and 10.7 +/- 0.50% poly(A) as measured by hybridization to [3H]poly(U) and comprise 2.37 and 1.22% of their respective polysomal RNA populations. Homologous poly(A)+ RNA-cDNA hybridizations revealed that greater than 95% of the mass of poly(A)+ RNAfree and poly(A)+ RNAbound contain nucleotide complexities of about 3.4 x 10(7) and 6.0 x 10(6), respectively. This represents about 20,000 and 5,000 poly(A)+ RNA species of average sizes. Heterologous hybridizations suggested that considerable overlap exists between poly(A)+ RNAfree and poly(A)+ RNAbound sequences that cannot be attributed to cross-contamination. This was confirmed by conducting heterologous reactions using kinetically enriched cDNA populations. Heterologous hybridizations involving poly(A)+ RNA derived from tightly bound polysomes and cDNAfree indicated tha most of the overlapping sequences are not contributed by loosely bound (high-salt releasable) polysomes. The ramifications of these findings are discussed.
机译:从大鼠肝脏中分离出游离的且与膜结合的多核糖体,并以最小的降解,交叉污染或被核或非多核胞质核糖核蛋白的污染分离出来。通过oligo(dT)纤维素色谱从游离和结合的多体RNA(poly(A)+ RNAfree和poly(A)+ RNAbound)分离出的Poly(A)+ RNA馏分分别在1600和1200个核苷酸处显示出数均长度。甲酰胺蔗糖梯度。通过与[3H] poly(U)杂交测定,Poly(A)+ RNAfree和poly(A)+ RNAbound包含9.1 +/- 0.55和10.7 +/- 0.50%的poly(A),分别占它们的2.37和1.22%各自的多体RNA群体。同源poly(A)+ RNA-cDNA杂交显示,多于95%的poly(A)+ RNAfree和poly(A)+ RNAbound质量包含约3.4 x 10(7)和6.0 x 10(6)的核苷酸复杂性), 分别。这代表平均大小的约20,000和5,000 poly(A)+ RNA种类。异源杂交表明,poly(A)+ RNAfree和poly(A)+ RNAbound序列之间存在相当大的重叠,这不能归因于交叉污染。通过使用动力学富集的cDNA群体进行异源反应可以证实这一点。涉及来源于紧密结合的多核糖体和无cDNA的poly(A)+ RNA的异源杂交表明,大多数重叠序列不是由松散结合(可释放高盐的多核糖体)贡献的。讨论了这些发现的后果。

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