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Structural implication of splicing stochastics

机译:拼接随机的结构含义

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Even though nearly every human gene has at least one alternative splice form, very little is so far known about the structure and function of resulting protein products. It is becoming increasingly clear that a significant fraction of all isoforms are products of noisy selection of splice sites and thus contribute little to actual functional diversity, and may potentially be deleterious. In this study, we examine the impact of alternative splicing on protein sequence and structure in three datasets: alternative splicing events conserved across multiple species, alternative splicing events in genes that are strongly linked to disease and all observed alternative splicing events. We find that the vast majority of all alternative isoforms result in unstable protein conformations. In contrast to that, the small subset of isoforms conserved across species tends to maintain protein structural integrity to a greater extent. Alternative splicing in disease-associated genes produces unstable structures just as frequently as all other genes, indicating that selection to reduce the effects of alternative splicing on this set is not especially pronounced. Overall, the properties of alternative spliced proteins are consistent with the outcome of noisy selection of splice sites by splicing machinery.
机译:即使几乎每个人类基因都具有至少一种其他剪接形式,但迄今为止对所得蛋白质产物的结构和功能了解甚少。越来越清楚的是,所有同工型中有很大一部分是对剪接位点进行嘈杂选择的产物,因此对实际功能多样性的贡献很小,并且可能有害。在本研究中,我们在三个数据集中检查了可变剪接对蛋白质序列和结构的影响:跨多个物种保守的可变剪接事件,与疾病密切相关的基因中的可变剪接事件以及所有观察到的可变剪接事件。我们发现,所有其他同工型的绝大多数导致不稳定的蛋白质构象。与此相反,跨物种保守的一小部分同工型倾向于更大程度地保持蛋白质结构完整性。与所有其他基因一样,与疾病相关的基因中的可变剪接产生不稳定的结构,这表明减少这种可变剪接作用的选择并不特别明显。总体而言,替代剪接蛋白的性质与通过剪接机对剪接位点进行嘈杂选择的结果一致。

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