Cal S, Aparicio J F, de los Reyes-Gavilan C G, Nicieza R G, Sanchez J
Departamento de Biología Funcional, Facultad de Medicina, Universidad de Oviedo, Spain.
Biochem J. 1995 Feb 15;306 ( Pt 1)(Pt 1):93-100. doi: 10.1042/bj3060093.
A new exocytoplasmic, nutritionally controlled endodeoxyribonuclease (EC 3.1.21.-) was purified to homogeneity from Streptomyces antibioticus. The enzyme showed an apparent molecular mass of 29 kDa (being active in the monomeric form) and a pI of approximately 7.8. The nuclease hydrolysed endonucleolytically double-stranded circular and linear DNA. The enzyme makes nicks in one strand of the DNA in G-rich regions, leaving either 5' or 3' short, single-stranded overhangs with 3'-hydroxy and 5'-phosphate termini. Breaks in the DNA occur when two nicks in opposite strands are close together. The enzyme had an optimum pH of 7.5 and an absolute requirement for bivalent cations and > or = 100 mM NaCl in the reaction buffer. Activity was greatly diminished in the presence of phosphate, Hg2+ or iodoacetate and was stimulated by dimethyl sulphoxide. Single-stranded DNA was a much poorer substrate than double-stranded DNA. The nuclease hydrolyses sequences of three or preferably more (dG).(dC) tracts in the DNA. The initial specificity shifts to other sequences (including sequences shorter than those initially hydrolysed) during the course of the reaction, giving the changing pattern of bands observed in agarose gels. 5-Methylcytosine-hemimethylated DNA is not hydrolysed by the nuclease. The properties of this novel enzyme suggest a relationship with class II restriction endonucleases and also with some eukaryotic nucleases.
从抗生链霉菌中纯化出一种新的胞外、营养控制的脱氧核糖核酸内切酶(EC 3.1.21.-),并使其达到同质。该酶的表观分子量为29 kDa(以单体形式具有活性),pI约为7.8。这种核酸酶以内切方式水解双链环状和线性DNA。该酶在富含G的区域在DNA的一条链上产生切口,留下具有3'-羟基和5'-磷酸末端的5'或3'短单链突出端。当相对链上的两个切口靠得很近时就会发生DNA断裂。该酶的最适pH为7.5,反应缓冲液中绝对需要二价阳离子和≥100 mM NaCl。在磷酸盐、Hg2+或碘乙酸存在下活性大大降低,而二甲基亚砜可刺激其活性。单链DNA作为底物比双链DNA差得多。该核酸酶水解DNA中三个或更优选更多的(dG)·(dC)序列。在反应过程中,初始特异性会转移到其他序列(包括比最初水解的序列短的序列),从而在琼脂糖凝胶中呈现出观察到的条带变化模式。5-甲基胞嘧啶半甲基化的DNA不被该核酸酶水解。这种新型酶的特性表明它与II类限制性内切核酸酶以及一些真核核酸酶有关。