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从氨基酸序列数据推导的合成寡核苷酸探针。理论与实践考量。

Synthetic oligonucleotide probes deduced from amino acid sequence data. Theoretical and practical considerations.

作者信息

Lathe R

出版信息

J Mol Biol. 1985 May 5;183(1):1-12. doi: 10.1016/0022-2836(85)90276-1.

Abstract

Synthetic probes deduced from amino acid sequence data are widely used to detect cognate coding sequences in libraries of cloned DNA segments. The redundancy of the genetic code dictates that a choice must be made between (1) a mixture of probes reflecting all codon combinations, and (2) a single longer "optimal" probe. The second strategy is examined in detail. The frequency of sequences matching a given probe by chance alone can be determined and also the frequency of sequences closely resembling the probe and contributing to the hybridization background. Gene banks cannot be treated as random associations of the four nucleotides, and probe sequences deduced from amino acid sequence data occur more often than predicted by chance alone. Probe lengths must be increased to confer the necessary specificity. Examination of hybrids formed between unique homologous probes and their cognate targets reveals that short stretches of perfect homology occurring by chance make a significant contribution to the hybridization background. Statistical methods for improving homology are examined, taking human coding sequences as an example, and considerations of codon utilization and dinucleotide frequencies yield an overall homology of greater than 82%. Recommendations for probe design and hybridization are presented, and the choice between using multiple probes reflecting all codon possibilities and a unique optimal probe is discussed.

摘要

从氨基酸序列数据推导而来的合成探针被广泛用于检测克隆DNA片段文库中的同源编码序列。遗传密码的冗余性决定了必须在以下两者之间做出选择:(1)反映所有密码子组合的探针混合物,以及(2)单个更长的“最佳”探针。本文详细研究了第二种策略。可以确定仅由偶然因素导致与给定探针匹配的序列频率,以及与探针非常相似并导致杂交背景的序列频率。基因文库不能被视为四种核苷酸的随机组合,从氨基酸序列数据推导而来的探针序列出现的频率比仅由偶然因素预测的要高。必须增加探针长度以赋予必要的特异性。对独特同源探针与其同源靶标之间形成的杂交体进行检查发现,偶然出现的短片段完全同源性对杂交背景有显著贡献。以人类编码序列为例,研究了提高同源性的统计方法,对密码子使用和二核苷酸频率的考虑产生了大于82%的总体同源性。本文提出了探针设计和杂交的建议,并讨论了在使用反映所有密码子可能性的多个探针和独特的最佳探针之间的选择。

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