Lim Kah Wai, Amrane Samir, Bouaziz Serge, Xu Weixin, Mu Yuguang, Patel Dinshaw J, Luu Kim Ngoc, Phan Anh Tuân
School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore.
J Am Chem Soc. 2009 Apr 1;131(12):4301-9. doi: 10.1021/ja807503g.
Previously, it has been reported that human telomeric DNA sequences could adopt in different experimental conditions four different intramolecular G-quadruplexes each involving three G-tetrad layers, namely, Na(+) solution antiparallel-stranded basket form, K(+) crystal parallel-stranded propeller form, K(+) solution (3 + 1) Form 1, and K(+) solution (3 + 1) Form 2. Here we present a new intramolecular G-quadruplex adopted by a four-repeat human telomeric sequence in K(+) solution (Form 3). This structure is a basket-type G-quadruplex with only two G-tetrad layers: loops are successively edgewise, diagonal, and edgewise; glycosidic conformations of guanines are syn x syn x anti x anti around each tetrad. Each strand of the core has both a parallel and an antiparallel adjacent strands; there are one narrow, one wide, and two medium grooves. Despite the presence of only two G-tetrads in the core, this structure is more stable than the three-G-tetrad intramolecular G-quadruplexes previously observed for human telomeric sequences in K(+) solution. Detailed structural elucidation of Form 3 revealed extensive base pairing and stacking in the loops capping both ends of the G-tetrad core, which might explain the high stability of the structure. This novel structure highlights the conformational heterogeneity of human telomeric DNA. It establishes a new folding principle for G-quadruplexes and suggests new loop sequences and structures for targeting in human telomeric DNA.
此前有报道称,在不同实验条件下,人类端粒DNA序列可形成四种不同的分子内G-四链体,每种都包含三个G-四联体层,即Na(+)溶液中的反平行链篮状结构、K(+)晶体中的平行链螺旋桨状结构、K(+)溶液中的(3 + 1)形式1和K(+)溶液中的(3 + 1)形式2。在此,我们展示了一种由四重复人类端粒序列在K(+)溶液中形成的新的分子内G-四链体(形式3)。这种结构是一种仅含两个G-四联体层的篮状G-四链体:环依次为边缘、对角和边缘排列;围绕每个四联体,鸟嘌呤的糖苷构象为顺式x顺式x反式x反式。核心的每条链都有一条平行相邻链和一条反平行相邻链;有一个窄沟、一个宽沟和两个中等宽度的沟。尽管核心中仅存在两个G-四联体,但这种结构比先前在K(+)溶液中观察到的人类端粒序列的三G-四联体分子内G-四链体更稳定。对形式3的详细结构解析揭示了在G-四联体核心两端环中的广泛碱基配对和堆积,这可能解释了该结构的高稳定性。这种新结构突出了人类端粒DNA的构象异质性。它为G-四链体建立了一种新的折叠原则,并为靶向人类端粒DNA提出了新的环序列和结构。