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Cross-Species Annotation of Basic Leucine Zipper Factor Interactions: Insight into the Evolution of Closed Interaction Networks

机译:基本亮氨酸拉链因子相互作用的跨物种注释:封闭的相互作用网络的演变的见解。

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摘要

Dimeric basic leucine zipper (bZIP) factors constitute one of the most important classes of enhancer-type transcription factors. In vertebrates, bZIP factors are involved in many cellular processes, including cell survival, learning and memory, cancer progression, lipid metabolism, and a variety of developmental processes. These factors have the ability to homodimerize and heterodimerize in a specific and predictable manner, resulting in hundreds of dimers with unique effects on transcription. In recent years, several studies have described dimerization preferences for bZIP factors from different species, including Homo sapiens, Drosophila melanogaster, Arabidopsis thaliana, and Saccharomyces cerevisiae. Here, these findings are summarized as novel, graphical representations of closed, interacting protein networks. These representations combine phylogenetic information, DNA-binding properties, and dimerization preference. Beyond summarizing bZIP dimerization preferences within selected species, we have included annotation for a solitary bZIP factor found in the primitive eukaryote, Giardia lamblia, a possible evolutionary precursor to the complex networks of bZIP factors encoded by other genomes. Finally, we discuss the fundamental similarities and differences between dimerization networks within the context of bZIP factor evolution.
机译:二聚体基本亮氨酸拉链(bZIP)因子构成最重要的增强子类型转录因子类别之一。在脊椎动物中,bZIP因子参与许多细胞过程,包括细胞存活,学习和记忆,癌症进展,脂质代谢和多种发育过程。这些因子具有以特定且可预测的方式均二聚和异二聚的能力,从而产生数百个对转录具有独特作用的二聚体。近年来,一些研究描述了来自不同物种的bZIP因子的二聚化偏好,这些物种包括智人,果蝇果蝇,拟南芥和酿酒酵母。在这里,这些发现被总结为封闭的相互作用蛋白网络的新颖图形表示。这些表示结合了系统发育信息,DNA结合特性和二聚化偏好。除了总结选定物种内的bZIP二聚化偏好外,我们还包括注释,用于注释在原始真核生物贾第鞭毛虫中发现的单个bZIP因子,该基因可能是其他基因组编码的bZIP因子复杂网络的进化前体。最后,我们讨论了bZIP因子进化背景下二聚化网络之间的基本异同。

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