Department of Molecular Biophysics and Biochemistry, Howard Hughes Medical Institute and Yale University, New Haven, CT, USA.
Crit Rev Biochem Mol Biol. 2010 Jun;45(3):215-32. doi: 10.3109/10409231003796523.
Group II introns are some of the largest ribozymes in nature, and they are a major source of information about RNA assembly and tertiary structural organization. These introns are of biological significance because they are self-splicing mobile elements that have migrated into diverse genomes and played a major role in the genomic organization and metabolism of most life forms. The tertiary structure of group II introns has been the subject of many phylogenetic, genetic, biochemical and biophysical investigations, all of which are consistent with the recent crystal structure of an intact group IIC intron from the alkaliphilic eubacterium Oceanobacillus iheyensis. The crystal structure reveals that catalytic intron domain V is enfolded within the other intronic domains through an elaborate network of diverse tertiary interactions. Within the folded core, DV adopts an activated conformation that readily binds catalytic metal ions and positions them in a manner appropriate for reaction with nucleic acid targets. The tertiary structure of the group II intron reveals new information on motifs for RNA architectural organization, mechanisms of group II intron catalysis, and the evolutionary relationships among RNA processing systems. Guided by the structure and the wealth of previous genetic and biochemical work, it is now possible to deduce the probable location of DVI and the site of additional domains that contribute to the function of the highly derived group IIB and IIA introns.
内含子 II 是自然界中最大的核酶之一,是关于 RNA 组装和三级结构组织的重要信息来源。这些内含子具有生物学意义,因为它们是自我剪接的移动元件,已经迁移到不同的基因组中,并在大多数生命形式的基因组组织和代谢中发挥了主要作用。内含子 II 的三级结构一直是许多系统发育、遗传、生化和生物物理研究的主题,所有这些研究都与最近从嗜碱古细菌 Oceanobacillus iheyensis 中获得的完整的 IIC 内含子晶体结构一致。晶体结构揭示了催化内含子域 V 通过各种三级相互作用的复杂网络折叠在其他内含子域内。在折叠的核心中,DV 采用易于结合催化金属离子的激活构象,并将其定位在与核酸靶标反应的适当位置。内含子 II 的三级结构揭示了有关 RNA 结构组织的基序、内含子 II 催化机制以及 RNA 加工系统之间进化关系的新信息。在结构和丰富的先前遗传和生化工作的指导下,现在可以推断出 DVI 的可能位置以及对高度衍生的 IIB 和 IIA 内含子功能有贡献的其他结构域的位置。