Dingley Andrew J, Steger Gerhard, Esters Bernd, Riesner Detlev, Grzesiek Stephan
Institut für Physikalische Biologie, Heinrich-Heine-Universität, D-40225 Düsseldorf, Germany.
J Mol Biol. 2003 Dec 5;334(4):751-67. doi: 10.1016/j.jmb.2003.10.015.
The 69 nucleotide left-terminal domain (T(L)) of the potato spindle tuber RNA viroid (PSTVd) constitutes one of its five structural elements. Due to a twofold complementary sequence repeat, two possible conformations are proposed for the T(L) secondary structure; an elongated-rod and a bifurcated form. In the present study, two T(L) mutants were designed that remove the symmetry of the sequence repeats and ensure that either the bifurcated or the elongated-rod conformation is thermodynamically favored. Imino 1H and 15N resonances were assigned for both mutants and the native T(L) domain based on 1H-1H NOESY and heteronuclear 1H-15N HSQC high-resolution NMR spectra. The NMR secondary structure analysis of all constructs establishes unambiguously the elongated-rod form as the secondary structure of the native T(L) domain. Temperature-gradient gel electrophoresis and UV melting experiments corroborate these results. A combined secondary structure and sequence analysis of T(L) domains of other Pospiviroidae family members indicates that the elongated-rod form is thermodynamically favored for the vast majority of these viroids.
马铃薯纺锤块茎RNA类病毒(PSTVd)的69个核苷酸左末端结构域(T(L))构成其五个结构元件之一。由于存在一个双重互补序列重复,因此为T(L)二级结构提出了两种可能的构象;一种细长杆状和一种分叉形式。在本研究中,设计了两个T(L)突变体,它们消除了序列重复的对称性,并确保分叉或细长杆状构象在热力学上更有利。基于1H-1H NOESY和异核1H-15N HSQC高分辨率NMR光谱,为两个突变体以及天然T(L)结构域指定了亚氨基1H和15N共振。所有构建体的NMR二级结构分析明确确定细长杆状形式为天然T(L)结构域的二级结构。温度梯度凝胶电泳和紫外熔解实验证实了这些结果。对其他马铃薯纺锤块茎类病毒科成员的T(L)结构域进行的二级结构和序列联合分析表明,对于绝大多数这些类病毒来说,细长杆状形式在热力学上更有利。