Howard Hughes Medical Institute and Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, CT 06520, USA.
J Mol Biol. 2012 Sep 21;422(3):347-65. doi: 10.1016/j.jmb.2012.05.037. Epub 2012 Jun 13.
The ai5γ group II intron requires a protein cofactor to facilitate native folding in the cell. Yeast protein Mss116 greatly accelerates intron folding under near-physiological conditions both in vivo and in vitro. Although the effect of Mss116 on the kinetics of ai5γ ribozyme folding and catalysis has been extensively studied, the precise structural role and interaction sites of Mss116 have been elusive. Using Nucleotide Analog Interference Mapping to study the folding of splicing precursor constructs, we have identified specific intron functional groups that participate in Mss116-facilitated folding and we have determined their role in the folding mechanism. The data indicate that Mss116 stabilizes an early, obligate folding intermediate within intron domain 1, thereby laying the foundation for productive folding to the native state. In addition, the data reveal an important role for the IBS2 exon sequence and for the terminus of domain 6, during the folding of self-splicing group IIB intron constructs.
ai5γ 组 II 内含子需要一种蛋白质辅助因子来促进细胞内的天然折叠。酵母蛋白 Mss116 在体内和体外的近生理条件下极大地加速了内含子的折叠。尽管 Mss116 对 ai5γ 核酶折叠和催化的动力学的影响已经得到了广泛的研究,但 Mss116 的精确结构作用和相互作用位点仍然难以捉摸。使用核苷酸类似物干扰作图来研究剪接前体构建体的折叠,我们已经确定了参与 Mss116 促进折叠的特定内含子功能组,并确定了它们在折叠机制中的作用。数据表明,Mss116 稳定了内含子结构域 1 内的早期必需折叠中间物,从而为向天然状态的有效折叠奠定了基础。此外,数据还揭示了 IBS2 外显子序列和结构域 6 末端在自我剪接组 IIB 内含子构建体折叠过程中的重要作用。