Han G W, Kopka M L, Cascio D, Grzeskowiak K, Dickerson R E
Molecular Biology Institute, University of California at Los Angeles, 90095, USA.
J Mol Biol. 1997 Jun 27;269(5):811-26. doi: 10.1006/jmbi.1997.1085.
The non-self-complementary DNA decamer C-A-A-A-G-A-A-A-A-G/C-T-T-T-T-C-T-T-T-G is a DNA/DNA analogue of a portion of the polypurine tract or PPT, which is a RNA/DNA hybrid that serves as a primer for synthesis of the (+) DNA strand by HIV reverse transcriptase (RT), and which is not digested by the RNase H domain of reverse transcriptase following (-) strand synthesis. The same unusual conformation that eludes RNase H, thought to be a change in width of minor groove, may also be responsible for the inhibition of HIV RT by minor groove binding drugs such as distamycin and their bis-linked derivatives. The present X-ray crystal structure of this DNA decamer exhibits the usual properties of A-tract B-DNA under biologically relevant conditions: large propeller twist of base-pairs, narrowed minor groove, and a straight helix axis. Groove narrowing is fully developed in the A-A-A-A region, but not in the A-A-A region, which previous investigators have proposed as being too short to exhibit typical A-tract properties. The RNA/DNA hybrid produced by HIV reverse transcriptase during (-) strand synthesis presumably forms a "heteromerous" or H-helix with narrower minor groove than an A-helical RNA/RNA duplex. If the narrowing of minor groove in A-tract H-helices is comparable to that seen in A-tract B-helices, then the narrowed minor groove of the polypurine tract could make the second primer site both (1) impervious to RNase H digestion, and (2) susceptible to inhibition by minor groove binding drugs.
非自我互补的DNA十聚体C-A-A-A-G-A-A-A-A-G/C-T-T-T-T-C-T-T-T-G是多聚嘌呤序列(PPT)一部分的DNA/DNA类似物,PPT是一种RNA/DNA杂交体,可作为HIV逆转录酶(RT)合成(+)DNA链的引物,并且在(-)链合成后不会被逆转录酶的RNase H结构域消化。这种躲避RNase H的异常构象,被认为是小沟宽度的改变,也可能是诸如偏端霉素及其双连接衍生物等小沟结合药物抑制HIV RT的原因。该DNA十聚体目前的X射线晶体结构在生物学相关条件下展现出A序列B-DNA的常见特性:碱基对的大螺旋桨扭曲、变窄的小沟以及笔直的螺旋轴。小沟变窄在A-A-A-A区域完全形成,但在A-A-A区域则未完全形成,先前的研究人员认为该区域太短而无法展现典型的A序列特性。HIV逆转录酶在(-)链合成过程中产生的RNA/DNA杂交体大概会形成一种“异源”或H螺旋,其小沟比A螺旋的RNA/RNA双链体更窄。如果A序列H螺旋中小沟变窄的程度与A序列B螺旋中所见的相当,那么多聚嘌呤序列变窄的小沟可能会使第二个引物位点既(1)不受RNase H消化的影响,又(2)易受小沟结合药物的抑制。