Sood Vanita D, Yekta Soraya, Collins Richard A
Department of Molecular and Medical Genetics, University of Toronto, 1 King's College Circle, Toronto, Ontario M5S 1A8, Canada.
Nucleic Acids Res. 2002 Mar 1;30(5):1132-8. doi: 10.1093/nar/30.5.1132.
We have used nucleotide analog interference mapping and site-specific substitution to determine the effect of 2'-deoxynucleotide substitution of each nucleotide in the VS ribozyme on the self-cleavage reaction. A large number of 2'-hydroxyls (2'-OHs) that contribute to cleavage activity of the VS ribozyme were found distributed throughout the core of the ribozyme. The locations of these 2'-OHs in the context of a recently developed helical orientation model of the VS ribozyme suggest roles in multi-stem junction structure, helix packing, internal loop structure and catalysis. The functional importance of three separate 2'-OHs supports the proposal that three uridine turns contribute to local and long-range tertiary structure formation. A cluster of important 2'-OHs near the loop that is the candidate region for the active site and one very important 2'-OH in the loop that contains the cleavage site confirm the functional importance of these two loops. A cluster of important 2'-OHs lining the minor groove of stem-loop I and helix II suggests that these regions of the backbone may play an important role in positioning helices in the active structure of the ribozyme.
我们利用核苷酸类似物干扰图谱法和位点特异性取代法,来确定VS核酶中每个核苷酸的2'-脱氧核苷酸取代对自我切割反应的影响。研究发现,大量对VS核酶切割活性有贡献的2'-羟基(2'-OHs)分布在核酶的整个核心区域。在最近建立的VS核酶螺旋取向模型背景下,这些2'-OHs的位置表明它们在多茎连接结构、螺旋堆积、内环结构和催化作用中发挥作用。三个独立的2'-OHs的功能重要性支持了这样的观点,即三个尿苷转折有助于局部和远距离三级结构的形成。在可能是活性位点候选区域的环附近有一组重要的2'-OHs,以及在包含切割位点的环中有一个非常重要的2'-OH,这证实了这两个环的功能重要性。在茎环I和螺旋II小沟内衬的一组重要的2'-OHs表明,这些主链区域可能在核酶活性结构中螺旋的定位中发挥重要作用。