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含T3A3的AhaIII和PmeI限制酶切序列中TpA切割位点处的灵活性。

Mobility at the TpA cleavage site in the T3A3-containing AhaIII and PmeI restriction sequences.

作者信息

Kennedy M A, Nuutero S T, Davis J T, Drobny G P, Reid B R

机构信息

Battelle Pacific Northwest Laboratories, Richland, Washington 99352.

出版信息

Biochemistry. 1993 Aug 10;32(31):8022-35. doi: 10.1021/bi00082a025.

Abstract

Lefevre et al. originally observed conformational transitions at the TpA step in the TTAA Pribnow box sequence of the trp promoter [Lefevre, J.-F., Lane, A. N., & Jardetzky, O. (1985) FEBS Lett. 190, 37-40]. In 500-MHz 1H NMR studies on the TnA(n)-containing DNA oligonucleotides [d(CGAGGTTTAAACCTCG)]2, [d(GCTCCTTTAAAGGAGC)]2, and [d(GCCGTTAACGGC)]2, we observe that, in addition to the H2 proton (which resides in the minor groove of DNA), the H8 proton of the first adenine (which resides in the major groove) is also broadened due to motion at the TpA junction. In analogous 16-mers where the T3A3 segment has been replaced by an A3T3 sequence, and therefore contains CA, GA, and AT steps (but no TA steps), all adenine proton resonances are narrow, indicating that the broadening occurs only at TpA steps. Assuming chemical exchange in the form of conformational dynamics, e.g., oscillation of the purine base about the glycosidic torsion angle, the experimental 500-MHz 1H T1 rho and 2D-NOESY data were used to constrain the correlation time of the internal motion to a range between the T1 and T1 rho minima. Calculated line shapes using a two-site exchange model indicate that the motion has an amplitude of 20-50 degrees with an associated tau c of ca. 1.6 x 10(-4) to 1.0 x 10(-5) s rad-1, respectively. The mobility appears to be a consequence of the structure at the TpA junction which is characterized by (1) a wide minor groove between two regions of narrow minor groove, (2) an unusual average orientation of the adenine heterocycle probably resulting from a poor base-stacking interaction of the adenine with the preceding thymine, and (3) a sharp discontinuity in the sugar conformation at the TpA step.

摘要

勒费夫尔等人最初在色氨酸启动子的TTAA普里布诺框序列的TpA步观察到构象转变[勒费夫尔,J.-F.,莱恩,A. N.,& 雅德茨基,O.(1985年)《欧洲生物化学学会联合会快报》190,37 - 40]。在对含TnA(n)的DNA寡核苷酸[d(CGAGGTTTAAACCTCG)]2、[d(GCTCCTTTAAAGGAGC)]2和[d(GCCGTTAACGGC)]2进行的500兆赫1H核磁共振研究中,我们观察到,除了H2质子(位于DNA小沟中)外,第一个腺嘌呤的H8质子(位于大沟中)也因TpA连接处的运动而变宽。在类似的16聚体中,T3A3片段已被A3T3序列取代,因此包含CA、GA和AT步(但没有TA步),所有腺嘌呤质子共振都很窄,这表明变宽仅发生在TpA步。假设以构象动力学形式进行化学交换,例如嘌呤碱基围绕糖苷扭转角的振荡,实验性的500兆赫1H T1 rho和二维核Overhauser效应光谱(2D - NOESY)数据被用于将内部运动的相关时间限制在T1和T1 rho最小值之间的范围内。使用双位点交换模型计算的线形表明,该运动的幅度为20 - 50度,相关的弛豫时间常数(tau c)分别约为1.6×10(-4)至1.0×10(-5)秒弧度-1。这种流动性似乎是TpA连接处结构的结果,其特征在于:(1)在两个窄小沟区域之间有一个宽大的小沟;(2)腺嘌呤杂环的异常平均取向,这可能是由于腺嘌呤与前一个胸腺嘧啶的碱基堆积相互作用不佳所致;(3)在TpA步处糖构象的急剧不连续性。

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