RNA polymerase I (Pol I) is responsible for synthesizing ribosomal RNA, which is the rate limiting step in ribosome biogenesis. We have reported wide variability in the magnitude of the rate constants defining the rate limiting step in sequential nucleotide additions catalyzed by Pol I. in this study we sought to determine if base identity impacts the rate limiting step of nucleotide addition catalyzed by Pol I. To this end, we report a transient state kinetic interrogation of AMP, CMP, GMP, and UMP incorporations catalyzed by Pol I. We found that Pol I uses one kinetic mechanism to incorporate all nucleotides. However, we found that UMP incorporation is faster than AMP, CMP, and GMP additions. Further, we found that endonucleolytic removal of a dimer from the 3' end was fastest when the 3' terminal base is a UMP. It has been previously shown that both downstream and upstream template sequence identity impacts the kinetics of nucleotide addition. The results reported here show that the incoming base identity also impacts the magnitude of the observed rate limiting step.
Global kinetic mechanism describing single nucleotide incorporation for RNA polymerase I reveals fast UMP incorporation.
描述 RNA 聚合酶 I 单核苷酸掺入的全局动力学机制揭示了 UMP 的快速掺入
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作者:Fuller Kaila B, Jacobs Ruth Q, Carter Zachariah I, Cuny Zachary G, Schneider David A, Lucius Aaron L
| 期刊: | Biophysical Chemistry | 影响因子: | 2.200 |
| 时间: | 2024 | 起止号: | 2024 Sep;312:107281 |
| doi: | 10.1016/j.bpc.2024.107281 | 研究方向: | 免疫/内分泌 |
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