Muniyappa K, Ramdas J, Mythili E, Galande S
Department of Biochemistry, Indian Institute of Science, Bangalore.
Biochimie. 1991 Feb-Mar;73(2-3):187-90. doi: 10.1016/0300-9084(91)90201-b.
The ability of E coli recA protein to promote homologous pairing with linear duplex DNA bound to HU protein (Nucleosome cores) was found to be differentially affected. The formation of paranemic joint molecules was not affected whereas the formation of plectomic joint molecules was inhibited from the start of the reaction. The formation of paranemic joint molecules between nucleoprotein filaments of recA protein-circular single stranded DNA and closed circular duplex DNA is believed to generate positive supercoiling in the duplex DNA. We found that the positively superhelical duplex DNA was inert in the formation of joint molecules but could be converted into an active substrate, in situ, by the action of wheat germ topoisomerase I. These observations initiate an understanding of the structural features of E coli chromosome such as DNA supercoiling and nucleosome-like structures in homologous recombination.
人们发现,大肠杆菌RecA蛋白促进与结合于HU蛋白(核小体核心)的线性双链DNA进行同源配对的能力受到不同程度的影响。平行排列连接分子的形成未受影响,而从反应开始,螺旋缠绕连接分子的形成就受到抑制。RecA蛋白-环状单链DNA与闭环双链DNA的核蛋白细丝之间平行排列连接分子的形成被认为会在双链DNA中产生正超螺旋。我们发现,正超螺旋双链DNA在连接分子形成过程中呈惰性,但通过小麦胚芽拓扑异构酶I的作用可在原位转化为活性底物。这些观察结果开启了对大肠杆菌染色体结构特征(如同源重组中的DNA超螺旋和核小体样结构)的理解。