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Factors Affecting Splicing Strength of Yeast Genes

机译:酵母基因剪接强度的影响因素

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摘要

Accurate and efficient splicing is of crucial importance for highly-transcribed intron-containing genes (ICGs) in rapidly replicating unicellular eukaryotes such as the budding yeast Saccharomyces cerevisiae. We characterize the 5′ and 3′ splice sites (ss) by position weight matrix scores (PWMSs), which is the highest for the consensus sequence and the lowest for splice sites differing most from the consensus sequence and used PWMS as a proxy for splicing strength. HAC1, which is known to be spliced by a nonspliceosomal mechanism, has the most negative PWMS for both its 5′ ss and 3′ ss. Several genes under strong splicing regulation and requiring additional splicing factors for their splicing also have small or negative PWMS values. Splicing strength is higher for highly transcribed ICGs than for lowly transcribed ICGs and higher for transcripts that bind strongly to spliceosomes than those that bind weakly. The 3′ splice site features a prominent poly-U tract before the 3′AG. Our results suggest the potential of using PWMS as a screening tool for ICGs that are either spliced by a nonspliceosome mechanism or under strong splicing regulation in yeast and other fungal species.
机译:准确和有效的剪接对于快速复制单细胞真核生物(如出芽的酿酒酵母)中的高转录含内含子基因(ICG)至关重要。我们通过位置权重矩阵得分(PWMSs)来表征5'和3'剪接位点(ss),这是共有序列的最高值,而与共有序列最大不同的剪接位点的最低值,并使用PWMS作为拼接的代理强度。已知通过非剪接体机制进行剪接的HAC1在其5'ss和3'ss上具有最负的PWMS。在强剪接调控下并且需要其他剪接因子进行剪接的几个基因也具有较小或负的PWMS值。高转录的ICG的剪接强度比低转录的ICG的剪接强度高,而与剪接体牢固结合的转录本比弱结合的转录本更高。 3'剪接位点在3'AG之前具有突出的多U线。我们的结果表明,将PWMS用作通过非剪接体机制进行剪接或在酵母和其他真菌物种中受到强烈剪接调控的ICG的筛选工具的潜力。

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