Lyamichev V I, Mirkin S M, Frank-Kamenetskii M D
Institute of Molecular Genetics, USSR Academy of Sciences, Moscow.
J Biomol Struct Dyn. 1985 Oct;3(2):327-38. doi: 10.1080/07391102.1985.10508420.
We have inserted the 509-bp-long fragment of sea urchin P. miliaris histone gene spacer region into plasmid pUC19. The fragment contains the 60-bp-long homopurine-homopyrimidine tract that is known to be hypersensitive to the S1 endonuclease. Using two-dimensional gel electrophoresis we have observed a sharp structural transition in the insert with increasing DNA superhelicity. As in the cases of cruciform and Z form formation, the observed transition partly relaxes the superhelical stress. In contrast with the other two well documented transitions, the observed transition strongly depends on pH. At pH7 and above the transition occurs at negative superhelicities exceeding the physiological range (- sigma greater than 0.08). For pH6 the transition occurs at -sigma = 0.055, whereas for pH4.3 it takes place at -sigma = 0.001. A comprehensive analysis of the obtained data has made it possible to define the nature of the observed transition. We conclude that under superhelical stress or/and at low pH homopurinehomopyrimidine tracts adopt a novel spatial structure called the H form.
我们已将海胆米氏刻肋海胆(P. miliaris)组蛋白基因间隔区509 bp长的片段插入质粒pUC19。该片段包含已知对S1核酸酶高度敏感的60 bp长的同嘌呤 - 同嘧啶序列。利用二维凝胶电泳,我们观察到随着DNA超螺旋度增加,插入片段发生了明显的结构转变。如同十字形和Z型形成的情况一样,观察到的转变部分缓解了超螺旋应力。与其他两个有充分记录的转变不同,观察到的转变强烈依赖于pH值。在pH7及以上,转变发生在超过生理范围的负超螺旋度(-σ大于0.08)时。对于pH6,转变发生在-σ = 0.055时,而对于pH4.3,转变发生在-σ = 0.001时。对所得数据的全面分析使得确定观察到的转变的性质成为可能。我们得出结论,在超螺旋应力下或/和在低pH值时,同嘌呤 - 同嘧啶序列会采用一种称为H型的新型空间结构。