DeYoung M, Siwkowski A M, Lian Y, Hampel A
Department of Biological Sciences, Northern Illinois University, DeKalb 60115, USA.
Biochemistry. 1995 Dec 5;34(48):15785-91. doi: 10.1021/bi00048a024.
Regions of the negative strands of the satellite RNAs of chicory yellow mottle virus (sCYMV1) and arabis mosaic virus (sArMV) have similarity in sequence and predicted secondary structure compared to the tobacco ringspot virus satellite RNA (sTRSV) hairpin ribozyme, suggesting that they may also be catalytic RNAs of a similar type. Our experiments show that the hairpin ribozyme-like sequences derived from sCYMV1 and sArMV have high phosphodiesterase activity. The Kcat values determined are similar to that of the highly active native sTRSV hairpin ribozyme under the same conditions, although the Km values are much higher. The Km of the sArMV ribozyme was reduced 3-fold, with no change in kcat, by extending substrate hybridization in helix 2. Additionally, the three hairpin ribozymes prefer different GUX sequences on the immediate 3'-side of the cleavage site. The sTRSV hairpin ribozyme cleaves GUX substrates with catalytic efficiencies in the relative order GUC >> GUU > GUG = GUA. The sCYMV1 ribozyme cleaves GUA > GUC, GUG, GUU. The sArMV ribozyme prefers GUA > GUG > GUU > GUC. The functional domain, regulating substrate selection at this position, must reside in the nucleotides that vary between the ribozyme--substrate complexes. The sTRSV ribozyme is most efficient at cleaving GUC complexes, while the sCYMV1 and sArMV ribozymes are most efficient for cleaving GUA-containing sequences.
与烟草环斑病毒卫星RNA(sTRSV)发夹状核酶相比,菊苣黄斑驳病毒(sCYMV1)和阿拉伯花叶病毒(sArMV)卫星RNA负链区域在序列和预测的二级结构上具有相似性,这表明它们可能也是类似类型的催化RNA。我们的实验表明,源自sCYMV1和sArMV的发夹状核酶样序列具有较高的磷酸二酯酶活性。在相同条件下,测定的Kcat值与高活性的天然sTRSV发夹状核酶相似,尽管Km值要高得多。通过延长螺旋2中的底物杂交,sArMV核酶的Km降低了3倍,而kcat没有变化。此外,这三种发夹状核酶在切割位点紧邻的3'侧更喜欢不同的GUX序列。sTRSV发夹状核酶切割GUX底物的催化效率相对顺序为GUC >> GUU > GUG = GUA。sCYMV1核酶切割GUA > GUC、GUG、GUU。sArMV核酶更喜欢GUA > GUG > GUU > GUC。在这个位置调节底物选择的功能域必须存在于核酶 - 底物复合物之间不同的核苷酸中。sTRSV核酶切割GUC复合物效率最高,而sCYMV1和sArMV核酶切割含GUA序列效率最高。