Aranda A, Pérez-Ortín J E, Moore C, del Olmo M
Departament de Bioquímica i Biologia Molecular, Facultats de Ciències, Universitat de València, andDepartamento de Biotecnología, Instituto de Agroquímica y Tecnología de Alimentos, CSIC, Apartado 73,-46100 Burjassot, Spain.
Nucleic Acids Res. 1998 Oct 15;26(20):4588-96. doi: 10.1093/nar/26.20.4588.
This report provides an analysis of a region of chromosome XII in which the FBP1 and YLR376c genes transcribe in the same direction. Our investigation indicates that the Saccharomyces cerevisiae FBP1 gene contains strong signals for polyadenylation and transcription termination in both orientations in vivo . A (TA)14 element plays a major role in directing polyadenylation in both orientations. While this region has four nonoverlapping copies of a TATATA hexanucleotide, which is a very potent polyadenylation efficiency element in yeast, it alone is not sufficient for full activation in the reverse orientation of a cluster of downstream poly(A) sites, and an additional upstream sequence is required. The putative RNA hairpin formed from the (TA)14 element is not involved in 3'-end formation. Surprisingly, deletion of the entire (TA)14 stretch affects transcription termination in the reverse orientation, in contrast to our previous results with the forward orientation, indicating that the transcription termination element operating in the reverse orientation has very different sequence requirements. Promoter elements for the YLR376c gene overlap with the signal for FBP1 3'-end formation. To our knowledge, this is the first time that overlapping of both types of regulatory signals has been found in two adjacent yeast genes.
本报告对十二号染色体的一个区域进行了分析,其中FBP1和YLR376c基因沿相同方向转录。我们的研究表明,酿酒酵母FBP1基因在体内两个方向上都含有强烈的多聚腺苷酸化和转录终止信号。一个(TA)14元件在两个方向上的多聚腺苷酸化中起主要作用。虽然该区域有四个不重叠的TATATA六核苷酸拷贝,这是酵母中一种非常有效的多聚腺苷酸化效率元件,但它本身不足以完全激活下游多聚(A)位点簇的反向方向,还需要一个额外的上游序列。由(TA)14元件形成的假定RNA发夹不参与3'末端的形成。令人惊讶的是,与我们之前对正向方向的研究结果相反,整个(TA)14片段的缺失会影响反向方向的转录终止,这表明在反向方向起作用的转录终止元件具有非常不同的序列要求。YLR376c基因的启动子元件与FBP1基因3'末端形成信号重叠。据我们所知,这是首次在两个相邻的酵母基因中发现两种类型调控信号的重叠。