Irniger S, Sanfaçon H, Egli C M, Braus G H
Institute of Microbiology, Swiss Federal Institute of Technology, Zürich.
Mol Cell Biol. 1992 May;12(5):2322-30. doi: 10.1128/mcb.12.5.2322-2330.1992.
We show that the polyadenylation site derived from the plant cauliflower mosaic virus (CaMV) is specifically functional in the yeast Saccharomyces cerevisiae. The mRNA 3' endpoints were mapped at the same position in yeast cells as in plants, and the CaMV polyadenylation site was recognized in an orientation-dependent manner. Mutational analysis of the CaMV 3'-end-formation signal revealed that multiple elements are essential for proper activity in yeast cells, including two upstream elements that are situated more than 100 and 43 to 51 nucleotides upstream of the poly(A) addition site and the sequences at or near the poly(A) addition site. A comparison of the sequence elements that are essential for proper function of the CaMV signal in yeast cells and plants showed that both organisms require a distal and a proximal upstream element but that these sequence elements are not identical in yeast cells and plants. The key element for functioning of the CaMV signal in yeast cells is the sequence TAGTATGTA, which is similar to a sequence previously proposed to act in yeast cells as a bipartite signal, namely, TAG ... TATGTA. Deletion of this sequence in the CaMV polyadenylation signal abolished 3'-end formation in yeast cells, and a single point mutation in this motif reduced the activity of the CaMV signal to below 15%. These results indicate that the bipartite sequence element acts as a signal for 3'-end formation in yeast cells but only together with other cis-acting elements.
我们发现,源自植物花椰菜花叶病毒(CaMV)的聚腺苷酸化位点在酿酒酵母中具有特异性功能。mRNA的3'末端在酵母细胞中的定位与在植物中的相同,并且CaMV聚腺苷酸化位点以方向依赖的方式被识别。对CaMV 3'末端形成信号的突变分析表明,多个元件对于酵母细胞中的正常活性至关重要,包括位于聚(A)添加位点上游100多个核苷酸以及43至51个核苷酸处的两个上游元件,以及聚(A)添加位点处或其附近的序列。对酵母细胞和植物中CaMV信号正常功能所必需的序列元件进行比较表明,两种生物都需要一个远端和一个近端上游元件,但这些序列元件在酵母细胞和植物中并不相同。CaMV信号在酵母细胞中发挥作用的关键元件是序列TAGTATGTA,它类似于先前提出在酵母细胞中作为二分信号起作用的序列,即TAG...TATGTA。在CaMV聚腺苷酸化信号中删除该序列会消除酵母细胞中的3'末端形成,并且该基序中的单点突变会将CaMV信号的活性降低至15%以下。这些结果表明,二分序列元件在酵母细胞中作为3'末端形成的信号,但仅与其他顺式作用元件一起起作用。