Python色素沉着表型基因表达网络组分的计算机分析鉴定出进化上保守的转录因子结合位点簇

Q1 Biochemistry, Genetics and Molecular Biology Advances in Bioinformatics Pub Date : 2016-09-06 DOI:10.1155/2016/1286510
Kristopher J. L. Irizarry, R. Bryden
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引用次数: 7

摘要

颜色的变化为研究进化和选择的遗传基础提供了机会。对爬行动物的研究比哺乳动物少。比较基因组学方法允许在一个物种中获得的知识用于另一个物种。我们描述了一项对蟒蛇保守调控模块的比较脊椎动物分析,旨在评估生物信息学证据,证明在哺乳动物色素沉着表型中重要的转录因子也可能在蟒蛇色素沉着表型中重要。我们鉴定了23个与皮毛颜色表型变异相关的哺乳动物基因同源物,并评估了蟒蛇与小鼠、狗、马、牛、鸡、变色蜥蜴和袜带蛇之间的配对蛋白质序列同源程度。接下来,我们确定了一组黑素细胞/色素相关转录因子(CREB, FOXD3, LEF-1, MITF, POU3F2和USF-1),基于多物种间的同源比对,这些转录因子在其DNA结合区域内表现出相对保守的序列相似性。最后,我们在bivittatus的AIM1、DCT、MC1R、MITF、MLANA、OA1、PMEL、RAB27A和TYR的1500个核苷酸上游区域的约200个核苷酸间隔内鉴定出27个进化上保守的转录因子结合位点簇。我们的研究结果提供了对蟒蛇色素表型的深入了解。
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In Silico Analysis of Gene Expression Network Components Underlying Pigmentation Phenotypes in the Python Identified Evolutionarily Conserved Clusters of Transcription Factor Binding Sites
Color variation provides the opportunity to investigate the genetic basis of evolution and selection. Reptiles are less studied than mammals. Comparative genomics approaches allow for knowledge gained in one species to be leveraged for use in another species. We describe a comparative vertebrate analysis of conserved regulatory modules in pythons aimed at assessing bioinformatics evidence that transcription factors important in mammalian pigmentation phenotypes may also be important in python pigmentation phenotypes. We identified 23 python orthologs of mammalian genes associated with variation in coat color phenotypes for which we assessed the extent of pairwise protein sequence identity between pythons and mouse, dog, horse, cow, chicken, anole lizard, and garter snake. We next identified a set of melanocyte/pigment associated transcription factors (CREB, FOXD3, LEF-1, MITF, POU3F2, and USF-1) that exhibit relatively conserved sequence similarity within their DNA binding regions across species based on orthologous alignments across multiple species. Finally, we identified 27 evolutionarily conserved clusters of transcription factor binding sites within ~200-nucleotide intervals of the 1500-nucleotide upstream regions of AIM1, DCT, MC1R, MITF, MLANA, OA1, PMEL, RAB27A, and TYR from Python bivittatus. Our results provide insight into pigment phenotypes in pythons.
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Advances in Bioinformatics
Advances in Bioinformatics Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
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