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酵母中5'剪接位点的选择:与U1碱基配对的遗传改变揭示了其他要求。

5' splice site selection in yeast: genetic alterations in base-pairing with U1 reveal additional requirements.

作者信息

Siliciano P G, Guthrie C

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco 94143.

出版信息

Genes Dev. 1988 Oct;2(10):1258-67. doi: 10.1101/gad.2.10.1258.

Abstract

Using a strategy of compensatory nucleotide changes between yeast U1 and a 5' splice site, we have analyzed the contribution of base-pairing to the efficiency and fidelity of pre-mRNA splicing in vivo. Watson-Crick base-pairing interactions with U1 can be demonstrated at intron positions 1 and 5 but not at position 4. Moreover, restoration of the ability to pair with U1 is not sufficient to restore activity in the second step of splicing to intron position 1 mutants. Finally, in contrast to recent observations in mammalian systems, we find that the precise position of 5' splice site cleavage is not determined solely by the base-pairing interaction with U1. Rather, the presence of a G residue at position 5 is required for the correct localization of the nucleolytic event. Taken together, these results indicate that the demands for 5' splice site selection and utilization are more complex than a simple maximization of Watson-Crick interactions with U1.

摘要

利用酵母U1与5'剪接位点之间的补偿性核苷酸变化策略,我们分析了碱基配对对体内前体mRNA剪接效率和保真度的贡献。在内含子位置1和5处可证明与U1的沃森-克里克碱基配对相互作用,但在位置4处则不然。此外,恢复与U1配对的能力不足以将剪接第二步的活性恢复到内含子位置1突变体。最后,与哺乳动物系统中最近的观察结果相反,我们发现5'剪接位点切割的精确位置并非仅由与U1的碱基配对相互作用决定。相反,位置5处存在G残基是核酸裂解事件正确定位所必需的。综上所述,这些结果表明,5'剪接位点选择和利用的要求比与U1的沃森-克里克相互作用的简单最大化更为复杂。

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