Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Biol Chem. 2011 Sep 30;286(39):34468-78. doi: 10.1074/jbc.M111.283796. Epub 2011 Aug 12.
The DNA helicase encoded by gene 4 of bacteriophage T7 assembles on single-stranded DNA as a hexamer of six identical subunits with the DNA passing through the center of the toroid. The helicase couples the hydrolysis of dTTP to unidirectional translocation on single-stranded DNA and the unwinding of duplex DNA. Phe(523), positioned in a β-hairpin loop at the subunit interface, plays a key role in coupling the hydrolysis of dTTP to DNA unwinding. Replacement of Phe(523) with alanine or valine abolishes the ability of the helicase to unwind DNA or allow T7 polymerase to mediate strand-displacement synthesis on duplex DNA. In vivo complementation studies reveal a requirement for a hydrophobic residue with long side chains at this position. In a crystal structure of T7 helicase, when a nucleotide is bound at a subunit interface, Phe(523) is buried within the interface. However, in the unbound state, it is more exposed on the outer surface of the helicase. This structural difference suggests that the β-hairpin bearing the Phe(523) may undergo a conformational change during nucleotide hydrolysis. We postulate that upon hydrolysis of dTTP, Phe(523) moves from within the subunit interface to a more exposed position where it contacts the displaced complementary strand and facilitates unwinding.
T7 噬菌体基因 4 编码的 DNA 解旋酶作为六聚体的六个相同亚基组装在单链 DNA 上,DNA 通过环的中心穿过。解旋酶将 dTTP 的水解与单链 DNA 的单向易位和双链 DNA 的解旋偶联。位于亚基界面β发夹环中的苯丙氨酸(523)在将 dTTP 的水解与 DNA 解旋偶联中起着关键作用。用丙氨酸或缬氨酸取代苯丙氨酸(523)会使解旋酶失去解开 DNA 的能力,或阻止 T7 聚合酶介导双链 DNA 上的链置换合成。体内互补研究揭示了该位置需要具有长侧链的疏水性残基。在 T7 解旋酶的晶体结构中,当核苷酸结合在亚基界面上时,苯丙氨酸(523)被埋藏在界面内。然而,在未结合状态下,它在解旋酶的外表面上更加暴露。这种结构差异表明,带有苯丙氨酸(523)的β发夹可能在核苷酸水解过程中发生构象变化。我们假设,在 dTTP 水解后,苯丙氨酸(523)从亚基界面移动到更暴露的位置,在该位置与取代的互补链接触并促进解旋。