Calvo O, Manley J L
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Mol Cell. 2001 May;7(5):1013-23. doi: 10.1016/s1097-2765(01)00236-2.
Tight connections exist between transcription and subsequent processing of mRNA precursors, and interactions between the transcription and polyadenylation machineries seem especially extensive. Using a yeast two-hybrid screen to identify factors that interact with the polyadenylation factor CstF-64, we uncovered an interaction with the transcriptional coactivator PC4. Both human proteins have yeast homologs, Rna15p and Sub1p, respectively, and we show that these two proteins also interact. Given evidence that certain polyadenylation factors, including Rna15p, are necessary for termination in yeast, we show that deletion or overexpression of SUB1 suppresses or enhances, respectively, both growth and termination defects detected in an rna15 mutant strain. Our findings provide an additional, unexpected connection between transcription and polyadenylation and suggest that PC4/Sub1p, via its interaction with CstF-64/Rna15p, possesses an evolutionarily conserved antitermination activity.
mRNA前体的转录与后续加工之间存在紧密联系,转录与聚腺苷酸化机制之间的相互作用似乎尤为广泛。利用酵母双杂交筛选来鉴定与聚腺苷酸化因子CstF-64相互作用的因子,我们发现了它与转录共激活因子PC4之间的相互作用。这两种人类蛋白分别有酵母同源物Rna15p和Sub1p,我们证明这两种蛋白也相互作用。鉴于有证据表明某些聚腺苷酸化因子,包括Rna15p,对于酵母中的终止是必需的,我们表明SUB1的缺失或过表达分别抑制或增强了在rna15突变菌株中检测到的生长和终止缺陷。我们的发现揭示了转录与聚腺苷酸化之间另一个意想不到的联系,并表明PC4/Sub1p通过其与CstF-64/Rna15p的相互作用,具有进化上保守的抗终止活性。