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A purely bioinformatic pipeline for the prediction of mammalian odorant receptor gene enhancers

机译:预测哺乳动物气味受体基因增强子的纯生物信息流水线

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In most mammals, a vast array of genes coding for chemosensory receptors mediates olfaction. Odorant receptor (OR) genes generally constitute the largest multifamily (?1100 intact members in the mouse). From the whole pool, each olfactory neuron expresses a single OR allele following poorly characterized mechanisms termed OR gene choice. OR genes are found in genomic aggregations known as clusters. Nearby enhancers, named elements, are crucial regulators of OR gene choice. Despite their importance, searching for new elements is burdensome. Other chemosensory receptor genes responsible for smell adhere to expression modalities resembling OR gene choice, and are arranged in genomic clusters — often with chromosomal linkage to OR genes. Still, no elements are known for them. Here we present an inexpensive framework aimed at predicting elements. We redefine cluster identity by focusing on multiple receptor gene families at once, and exemplify thirty — not necessarily OR-exclusive — novel candidate enhancers. The pipeline we introduce could guide future in vivo work aimed at discovering/validating new elements. In addition, our study provides an updated and comprehensive classification of all genomic loci responsible for the transduction of olfactory signals in mammals.
机译:在大多数哺乳动物中,编码化学感应受体的大量基因介导嗅觉。气味受体(OR)基因通常构成最大的多家族(小鼠中≥1100个完整成员)。从整个库中,每个嗅觉神经元都遵循称为OR基因选择的特征较差的机制表达单个OR等位基因。 OR基因存在于称为簇的基因组聚集中。附近的增强子(称为元素)是OR基因选择的关键调控因子。尽管它们很重要,但是寻找新的元素还是很麻烦的。其他负责嗅觉的化学感应受体基因遵循类似于OR基因选择的表达方式,并排列在基因组簇中-通常具有与OR基因的染色体连接。不过,尚无元素可为他们所知。在这里,我们提出了一种用于预测元素的廉价框架。我们通过一次集中于多个受体基因家族来重新定义簇身份,并举例说明三十种(不一定是OR排斥的)新型候选增强子。我们介绍的管道可以指导未来旨在发现/验证新元素的体内工作。此外,我们的研究提供了负责哺乳动物嗅觉信号转导的所有基因组位点的更新和全面分类。

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