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ATPase activity of Escherichia coli Rep helicase crosslinked to single-stranded DNA: implications for ATP driven helicase translocation.

机译:大肠杆菌Rep解旋酶与单链DNA交联的ATPase活性:对ATP驱动解旋酶易位的影响。

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摘要

To examine the coupling of ATP hydrolysis to helicase translocation along DNA, we have purified and characterized complexes of the Escherichia coli Rep protein, a dimeric DNA helicase, covalently crosslinked to a single-stranded hexadecameric oligodeoxynucleotide (S). Crosslinked Rep monomers (PS) as well as singly ligated (P2S) and doubly ligated (P2S2) Rep dimers were characterized. The equilibrium and kinetic constants for Rep dimerization as well as the steady-state ATPase activities of both PS and P2S crosslinked complexes were identical to the values determined for un-crosslinked Rep complexes formed with dT16. Therefore, ATP hydrolysis by both PS and P2S complexes are not coupled to DNA dissociation. This also rules out a strictly unidirectional sliding mechanism for ATP-driven translocation along single-stranded DNA by either PS or the P2S dimer. However, ATP hydrolysis by the doubly ligated P2S2 Rep dimer is coupled to single-stranded DNA dissociation from one subunit of the dimer, although loosely (low efficiency). These results suggest that ATP hydrolysis can drive translocation of the dimeric Rep helicase along DNA by a "rolling" mechanism where the two DNA binding sites of the dimer alternately bind and release DNA. Such a mechanism is biologically important when one subunit binds duplex DNA, followed by subsequent unwinding.
机译:为了检查ATP水解与解旋酶沿着DNA的转运的偶联,我们已经纯化并鉴定了大肠杆菌Rep蛋白(一种二聚体DNA解旋酶)的复合物,该复合物与单链十六聚体寡脱氧核苷酸(S)共价交联。表征了交联的Rep单体(PS)以及单连接(P2S)和双连接(P2S2)Rep二聚体。 PS和P2S交联复合物的Rep二聚化的平衡和动力学常数以及稳态ATPase活性与由dT16形成的未交联Rep复合物的测定值相同。因此,由PS和P2S配合物水解的ATP不与DNA解离偶联。这也排除了通过PS或P2S二聚体沿着单链DNA进行ATP驱动的易位的严格单向滑动机制。但是,通过双重连接的P2S2 Rep二聚体进行的ATP水解与从该二聚体的一个亚基的单链DNA解离偶联,尽管松散(效率低)。这些结果表明,ATP水解可通过“滚动”机制驱动二聚体Rep解旋酶沿DNA的移位,其中二聚体的两个DNA结合位点交替结合并释放DNA。当一个亚基结合双链体DNA,然后展开时,这种机制在生物学上很重要。

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    Wong, I; Lohman, T M;

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  • 年度 1996
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  • 正文语种 en
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