Enemark Eric J, Joshua-Tor Leemor
W. M. Keck Structural Biology Laboratory, Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, New York 11724, USA.
Nature. 2006 Jul 20;442(7100):270-5. doi: 10.1038/nature04943.
The E1 protein of papillomavirus is a hexameric ring helicase belonging to the AAA + family. The mechanism that couples the ATP cycle to DNA translocation has been unclear. Here we present the crystal structure of the E1 hexamer with single-stranded DNA discretely bound within the hexamer channel and nucleotides at the subunit interfaces. This structure demonstrates that only one strand of DNA passes through the hexamer channel and that the DNA-binding hairpins of each subunit form a spiral 'staircase' that sequentially tracks the oligonucleotide backbone. Consecutively grouped ATP, ADP and apo configurations correlate with the height of the hairpin, suggesting a straightforward DNA translocation mechanism. Each subunit sequentially progresses through ATP, ADP and apo states while the associated DNA-binding hairpin travels from the top staircase position to the bottom, escorting one nucleotide of single-stranded DNA through the channel. These events permute sequentially around the ring from one subunit to the next.
乳头瘤病毒的E1蛋白是一种属于AAA+家族的六聚体环状解旋酶。将ATP循环与DNA易位相耦合的机制尚不清楚。在此,我们展示了E1六聚体的晶体结构,其中单链DNA离散地结合在六聚体通道内,核苷酸位于亚基界面处。该结构表明,只有一条DNA链穿过六聚体通道,并且每个亚基的DNA结合发夹形成一个螺旋“楼梯”,依次追踪寡核苷酸主链。连续分组的ATP、ADP和无核苷酸状态与发夹的高度相关,提示了一种直接的DNA易位机制。每个亚基依次经历ATP、ADP和无核苷酸状态,而相关的DNA结合发夹从楼梯顶部位置移动到底部,护送一个单链DNA核苷酸通过通道。这些事件围绕环依次从一个亚基排列到下一个亚基。