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寡核苷酸中Z-DNA形成的序列特异性。

Sequence specificity of Z-DNA formation in oligonucleotides.

作者信息

Kadalayil L P, Majumder K, Mishra R K, Brahmachari S K

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore.

出版信息

Biochem Int. 1988 Jul;17(1):121-31.

PMID:3263858
Abstract

The sequence specific requirement for B----Z transition in solution was examined in d(CGTGCGCACG), d(CGTACGTACG), d(ACGTACGT) in presence of various Z-inducing factors. Conformational studies show that inspite of the alternating nature of purines and pyrimidines, the aforementioned sequences do not undergo B----Z transition under the influence of NaCl, hexamine cobalt chloride and ethanol. A comparison with the crystal structures of an assorted array of purine and pyrimidine sequences show that the sequence requirement for B----Z transition is much more stringent in solution as compared to the solid state. The disruptive influence of AT base pairs in B to Z transition is discussed.

摘要

在存在各种Z诱导因子的情况下,对溶液中B-Z转变的序列特异性要求进行了研究,研究对象为d(CGTGCGCACG)、d(CGTACGTACG)、d(ACGTACGT)。构象研究表明,尽管嘌呤和嘧啶具有交替性质,但上述序列在氯化钠、六胺氯化钴和乙醇的影响下不会发生B-Z转变。与一系列嘌呤和嘧啶序列的晶体结构进行比较表明,与固态相比,溶液中B-Z转变的序列要求更为严格。讨论了AT碱基对在B向Z转变中的破坏作用。

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