Ramos Andres, Hollingworth David, Pastore Annalisa
National Institute for Medical Research, London NW7 1AA, UK.
RNA. 2003 Mar;9(3):293-8. doi: 10.1261/rna.2168503.
We have investigated the role in the fold and RNA-binding properties of the KH modules of a hydrophobic to asparagine mutation of clinical importance in the fragile X syndrome. The mutation involves a well-conserved hydrophobic residue close to the N terminus of the second helix of the KH fold (alpha2(3) position). The effect of the mutation has been long debated: Although the mutant has been shown to disrupt the three-dimensional fold of several KH domains, the residue seems also to be directly involved in RNA binding, the main function of the KH module. Here we have used the KH3 of Nova-1, whose structure is known both in isolation and in an RNA complex, to study in detail the role of the alpha2(3) position. A detailed comparison of Nova KH3 structure with its RNA/KH complex and with other KH structures suggests a dual role for the alpha2(3) residue, which is involved both in stabilizing the hydrophobic core and in RNA contacts. We further show by nuclear magnetic resonance (NMR) studies in solution that L447 of Nova-1 in position alpha2(3) is in exchange in the absence of RNA, and becomes locked in a more rigid conformation only upon formation of an RNA complex. This implies that position alpha2(3) functions as a "gate" in the mechanism of RNA recognition of KH motifs based on the rigidification of the fold upon RNA binding.
我们研究了脆性X综合征中一个具有临床重要性的从疏水性氨基酸到天冬酰胺的突变对KH结构域折叠及RNA结合特性的作用。该突变涉及靠近KH折叠第二个螺旋N端(α2(3)位置)的一个高度保守的疏水性残基。关于该突变的影响一直存在争议:尽管已表明该突变体会破坏几个KH结构域的三维折叠,但该残基似乎也直接参与RNA结合,即KH结构域的主要功能。在此,我们利用Nova-1的KH3结构域(其单独结构以及与RNA复合物的结构均已知)来详细研究α2(3)位置的作用。将Nova KH3结构与其RNA/KH复合物以及其他KH结构进行详细比较,结果表明α2(3)残基具有双重作用,既参与稳定疏水核心,又参与与RNA的接触。我们通过溶液中的核磁共振(NMR)研究进一步表明,处于α2(3)位置的Nova-1的L447在无RNA时处于交换状态,只有在形成RNA复合物时才会锁定在更刚性的构象中。这意味着基于RNA结合时折叠的刚性化,α2(3)位置在KH基序识别RNA的机制中起到“门”的作用。