Shuman S
Program in Molecular Biology, Sloan-Kettering Institute, New York, New York 10021.
J Biol Chem. 1991 Jun 15;266(17):11372-9.
Purified vaccinia virus DNA topoisomerase I forms a cleavable complex with duplex DNA at a conserved sequence element 5'(C/T)CCTTdecreases in the incised DNA strand. DNase I footprint studies show that vaccinia topoisomerase protects the region around the site of covalent adduct formation from nuclease digestion. On the cleaved DNA strand, the protected region extends from +13 to -13 (+1 being the site of cleavage). On the noncleaved strand, the protected region extends from +13 to -9. Similar nuclease protection is observed for a mutant topoisomerase (containing a Tyr ---- Phe substitution at the active site amino acid 274) that is catalytically inert and does not form the covalent intermediate. Thus, vaccinia topoisomerase is a specific DNA binding protein independent of its competence in transesterification. By studying the cleavage of a series of 12-mer DNA duplexes in which the position of the CCCTTdecreases motif within the substrate is systematically phased, the "minimal" substrate for cleavage has been defined; cleavage requires six nucleotides upstream of the cleavage site and two nucleotides downstream of the site. An analysis of the cleavage of oligomer substrates mutated singly in the CCCTT sequence reveals a hierarchy of mutational effects based on position within the pentamer motif and the nature of the sequence alteration.
纯化的痘苗病毒DNA拓扑异构酶I与双链DNA在保守序列元件5'(C/T)CCTT处形成可切割复合物,切割后的DNA链中该序列减少。DNase I足迹研究表明,痘苗拓扑异构酶保护共价加合物形成位点周围的区域不被核酸酶消化。在切割的DNA链上,受保护区域从+13延伸到-13(+1为切割位点)。在未切割的链上,受保护区域从+13延伸到-9。对于催化惰性且不形成共价中间体的突变拓扑异构酶(在活性位点氨基酸274处含有酪氨酸----苯丙氨酸取代)也观察到类似的核酸酶保护。因此,痘苗拓扑异构酶是一种特异性DNA结合蛋白,与其酯交换能力无关。通过研究一系列12聚体DNA双链体的切割,其中底物内CCCTT减少基序的位置系统地定相,可以确定切割的“最小”底物;切割需要切割位点上游六个核苷酸和下游两个核苷酸。对CCCTT序列中单个突变的寡聚体底物切割的分析揭示了基于五聚体基序内位置和序列改变性质的突变效应层次结构。