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Cooperation cis-interactions versatility and evolutionary plasticity of multiple cis-acting elements underlie krox20 hindbrain regulation

机译:多种顺式作用元件的协同作用顺式相互作用多功能性和进化可塑性是krox20后脑调控的基础

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摘要

Cis-regulation plays an essential role in the control of gene expression, and is particularly complex and poorly understood for developmental genes, which are subject to multiple levels of modulation. In this study, we performed a global analysis of the cis-acting elements involved in the control of the zebrafish developmental gene krox20. krox20 encodes a transcription factor required for hindbrain segmentation and patterning, a morphogenetic process highly conserved during vertebrate evolution. Chromatin accessibility analysis reveals a cis-regulatory landscape that includes 6 elements participating in the control of initiation and autoregulatory aspects of krox20 hindbrain expression. Combining transgenic reporter analyses and CRISPR/Cas9-mediated mutagenesis, we assign precise functions to each of these 6 elements and provide a comprehensive view of krox20 cis-regulation. Three important features emerged. First, cooperation between multiple cis-elements plays a major role in the regulation. Cooperation can surprisingly combine synergy and redundancy, and is not restricted to transcriptional enhancer activity (for example, 4 distinct elements cooperate through different modes to maintain autoregulation). Second, several elements are unexpectedly versatile, which allows them to be involved in different aspects of control of gene expression. Third, comparative analysis of the elements and their activities in several vertebrate species reveals that this versatility is underlain by major plasticity across evolution, despite the high conservation of the gene expression pattern. These characteristics are likely to be of broad significance for developmental genes.
机译:顺式调节在基因表达的控制中起着至关重要的作用,并且对于发育基因而言尤其复杂,人们对其了解甚少,而发育基因则受到多种水平的调节。在这项研究中,我们对参与控制斑马鱼发育基因krox20的顺式作用元件进行了全面分析。 krox20编码后脑分割和构图所需的转录因子,这是脊椎动物进化过程中高度保守的形态发生过程。染色质可及性分析揭示了一个顺式调控态势,其中包括6个参与krox20后脑表达的起始和自动调控方面的控制。结合转基因报道基因分析和CRISPR / Cas9介导的诱变,我们为这6个元素分别赋予精确的功能,并全面了解krox20的顺式调控。出现了三个重要特征。首先,多个顺式元件之间的合作在调节中起主要作用。合作可以令人惊讶地将协同作用和冗余相结合,并且不仅限于转录增强子活性(例如,4个不同的元件通过不同的模式进行协作以维持自动调节)。其次,一些元素出乎意料地用途广泛,这使它们可以参与基因表达控制的不同方面。第三,对几种脊椎动物物种的元素及其活性的比较分析表明,尽管基因表达模式高度保守,但这种多功能性是整个进化过程中主要可塑性的基础。这些特征对于发育基因可能具有广泛的意义。

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