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一种分光光度法在测定从半胱氨酸转移核糖核酸获得的寡核苷酸组成中的应用。

Application of a spectrophotometric method to the determination of the composition of oligonucleotides obtained from cysteine transfer ribonucleic acid.

作者信息

Holness N J, Atfield G

出版信息

Biochem J. 1976 Oct 1;159(1):15-22. doi: 10.1042/bj1590015.

Abstract
  1. The applications of methods for determining the composition of oligonucleotides from u.v.-absorption spectra is described. 2. In the first method absorbances at selected wave-lengths were read from the spectra of oligonucleotides in solution in 7 M-urea which had been recorded at acid and alkaline pH values. 3. In the second method absorbances were sampled automatically at regular time-intervals during scans at acid and alkaline pH of each spectrum, converted into digital signals and recorded on paper take for computer processing. The holmium spectrum in the region of the holmium peak at 333.7 nm was superimposed on each nucleotide spectrum. The position of this peak maximum was used as a standard reference point in the computer-based analysis. 4. By using either method the composition was calculated by a least-squares procedure by using a library of values for five standard nucelotides obtained in a similar manner. 5. The methods gave satisfactory compositions for mixtures of mononucleotides as well as for five dinucleoside monophosphates. 6. Methods of minimizing the effects on the nucleotide composition of spectural changes due to base stacking are discussed. 7. The compositions of some oligonucleotides obtained during an investigation of the nucleotide sequence of tRNA (Cys) were determined and agreed with the sequences found by other methods.
摘要
  1. 描述了从紫外吸收光谱测定寡核苷酸组成的方法的应用。2. 在第一种方法中,从在酸性和碱性pH值下记录的7M尿素溶液中的寡核苷酸光谱中读取选定波长处的吸光度。3. 在第二种方法中,在每个光谱的酸性和碱性pH扫描期间,以规则的时间间隔自动对吸光度进行采样,转换为数字信号并记录在纸上以供计算机处理。钬在333.7nm处的钬峰区域的光谱叠加在每个核苷酸光谱上。该峰最大值的位置用作基于计算机分析的标准参考点。4. 通过使用这两种方法中的任何一种,通过使用以类似方式获得的五个标准核苷酸的值库,通过最小二乘法程序计算组成。5. 这些方法对于单核苷酸混合物以及五种二核苷单磷酸给出了令人满意的组成。6. 讨论了最小化由于碱基堆积引起的光谱变化对核苷酸组成的影响的方法。7. 测定了在对tRNA(Cys)核苷酸序列的研究过程中获得的一些寡核苷酸的组成,并且与通过其他方法发现的序列一致。

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