Seo Y S, Lee S H, Hurwitz J
Graduate Program in Molecular Biology, Memorial Sloan-Kettering Cancer Center, New York, New York 10021.
J Biol Chem. 1991 Jul 15;266(20):13161-70.
A DNA helicase, dependent on the multisubunit human single-stranded DNA binding protein (HSSB), was isolated from HeLa cells. At low levels of helicase, only the multisubunit SSBs, HSSB and yeast SSB, stimulated DNA helicase activity. At high levels of the helicase Escherichia coli SSB partially substituted for HSSB whereas other SSBs such as T4 gene 32 and adenovirus DNA binding protein did not stimulate the enzyme activity. Maximal activation of helicase activity occurred in the presence of one molecule of HSSB for every 20 nucleotides of single-stranded DNA. The addition of E. coli SSB significantly lowered the amount of HSSB required for strand displacement, suggesting that the HSSB plays at least two roles in the activation of the helicase. One is to bind single-stranded DNA, thereby preventing sequestration of the helicase, the other involves the interaction of the HSSB with the helicase. Monoclonal antibodies that interact with the 70- and 34-kDa subunits of HSSB inhibited its stimulation of the helicase activity. The DNA helicase acted catalytically in displacing duplex DNA and translocated in the 3' to 5' direction. The helicase displaced fragments from both ends of a DNA substrate that contained duplex region at both termini, but the 3' to 5' fragment was displaced 20 times faster than the 5' to 3' fragment. Since this helicase also displaced fully duplex DNA, the release of the 5' to 3' fragment may have occurred by entry of the helicase through the duplex end in a 3' to 5' direction.
从HeLa细胞中分离出一种依赖多亚基人单链DNA结合蛋白(HSSB)的DNA解旋酶。在解旋酶水平较低时,只有多亚基单链结合蛋白HSSB和酵母单链结合蛋白能刺激DNA解旋酶活性。在解旋酶水平较高时,大肠杆菌单链结合蛋白可部分替代HSSB,而其他单链结合蛋白如T4基因32蛋白和腺病毒DNA结合蛋白则不能刺激该酶活性。当单链DNA每20个核苷酸存在一个HSSB分子时,解旋酶活性达到最大激活状态。添加大肠杆菌单链结合蛋白可显著降低链置换所需的HSSB量,这表明HSSB在解旋酶激活过程中至少发挥两个作用。一是结合单链DNA,从而防止解旋酶被隔离,另一个作用涉及HSSB与解旋酶的相互作用。与HSSB的70 kDa和34 kDa亚基相互作用的单克隆抗体抑制了其对解旋酶活性的刺激。该DNA解旋酶在催化双链DNA置换时,沿3'至5'方向移位。解旋酶从两端都含有双链区域的DNA底物的两端置换片段,但3'至5'片段的置换速度比5'至3'片段快20倍。由于这种解旋酶也能置换完全双链的DNA,5'至3'片段的释放可能是由于解旋酶以3'至5'方向通过双链末端进入所致。