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3'-end-forming signals of yeast mRNA.

机译:酵母mRNA的3'末端形成信号。

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It was previously shown that three distinct but interdependent elements are required for 3' end formation of mRNA in the yeast Saccharomyces cerevisiae: (i) the efficiency element TATATA and related sequences, which function by enhancing the efficiency of positioning elements; (ii) positioning elements, such as TTAAGAAC and AAGAA, which position the poly(A) site; and (iii) the actual site of polyadenylation. In this study, we have shown that several A-rich sequences, including the vertebrate poly(A) signal AATAAA, are also positioning elements. Saturated mutagenesis revealed that optimum sequences of the positioning element were AATAAA and AAAAAA and that this element can tolerate various extents of replacements. However, the GATAAA sequence was completely ineffective. The major cleavage sites determined in vitro corresponded to the major poly(A) sites observed in vivo. Our findings support the assumption that some components of the basic polyadenylation machinery could have been conserved among yeasts, plants, and mammals, although 3' end formation in yeasts is clearly distinct from that of higher eukaryotes.
机译:先前已经表明,在酿酒酵母中,mRNA的3'末端形成需要三个不同但相互依存的元件:(i)效率元件TATATA和相关序列,其通过提高定位元件的效率起作用; (ii)定位poly(A)位点的定位元件,例如TTAAGAAC和AAGAA; (iii)聚腺苷酸化的实际位点。在这项研究中,我们已经显示了几个富含A的序列,包括脊椎动物的poly(A)信号AATAAA,也是定位元素。饱和诱变表明,定位元件的最佳序列是AATAAA和AAAAAA,并且该元件可以耐受各种程度的替换。但是,GATAAA序列完全无效。体外确定的主要切割位点对应于体内观察到的主要poly(A)位点。我们的发现支持这样一个假设,即尽管酵母中的3'末端形成明显不同于高级真核生物,但基本的聚腺苷酸化机制的某些成分在酵母,植物和哺乳动物中可能已经保守了。

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