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Published on: February 28, 2019
Functional Characterization of a Dual Enhancer/Promoter Regulatory Element Leading Human CD69 Expression
Jennifer Redondo-Antón1, M G Fontela1, Laura Notario1
1Immune Gene Regulation and Antigen Presentation Group, National Center for Microbiology, Institute of Health Carlos III (ISCIII), Madrid, Spain.
Insights
The CNS2 regulatory element is crucial for CD69 gene expression, exhibiting both promoter and enhancer functions essential for immune cell activation. This discovery sheds light on complex gene regulation networks.
Area of Science:
- * Molecular Biology
- * Immunology
- * Gene Regulation
Background:
- * The CD69 gene encodes a C-type lectin glycoprotein with immune regulatory functions, expressed on activated hematopoietic cells.
- * CD69 expression kinetics vary, suggesting involvement of complex gene regulatory networks.
- * A conserved element, CNS2, upstream of the CD69 gene, is a candidate regulator.
Purpose of the Study:
- * To investigate the function of the human CNS2 regulatory element in CD69 gene expression.
- * To determine if CNS2 possesses promoter and/or enhancer activities.
- * To analyze the transcriptional activity of CNS2 and its associated RNA products.
Main Methods:
- * CRISPR-Cas9 gene editing to eliminate the endogenous CNS2 element in immune cell lines.
- * Measurement of CD69 mRNA and protein expression levels.
- * Episomal luciferase reporter assays to assess regulatory functions.
- * Analysis of enhancer-derived RNA (eRNA) transcription.
Main Results:
- * CNS2 elimination (CNS2-/-) abolished CD69 expression, even with the promoter intact, indicating promoter-like function.
- * Inverted CNS2 retained some transcriptional activity, suggesting enhancer function.
- * Luciferase assays confirmed combined promoter and enhancer functions within CNS2.
- * CNS2 independently drove bidirectional transcription of enhancer-derived RNAs (eRNAs).
Conclusions:
- * CNS2 acts as a novel regulatory element with dual promoter and enhancer functions.
- * CNS2 is essential for CD69 gene transcriptional regulation.
- * CNS2's ability to drive eRNA transcription highlights its complex regulatory role.
Abstract:
The CD69 gene encodes a C-type lectin glycoprotein with immune regulatory properties which is expressed on the cell surfaces of all activated hematopoietic cells. CD69 activation kinetics differ by developmental stage, cell linage and activating conditions, and these differences have been attributed to the participation of complex gene regulatory networks. An evolutionarily conserved regulatory element, CNS2, located 4kb upstream of the CD69 gene transcriptional start site, has been proposed as the major candidate governing the gene transcriptional activation program. To investigate the function of human CNS2, we studied the effect of its endogenous elimination via CRISPR-Cas9 on CD69 protein and mRNA expression levels in various immune cell lines. Even when the entire promoter region was maintained, CNS2-/- cells did not express CD69, thus indicating that CNS2 has promoter-like characteristics. However, like enhancers, inverted CNS2 sustained transcription, although at a diminished levels, thereby suggesting that it has dual promoter and enhancer functions. Episomal luciferase assays further suggested that both functions are combined within the CNS2 regulatory element. In addition, CNS2 directs its own bidirectional transcription into two different enhancer-derived RNAs molecules (eRNAs) which are transcribed from two independent transcriptional start sites in opposite directions. This eRNA transcription is dependent on only the enhancer sequence itself, because in the absence of the CD69 promoter, sufficient RNA polymerase II levels are maintained at CNS2 to drive eRNA expression. Here, we describe a regulatory element with overlapping promoter and enhancer functions, which is essential for CD69 gene transcriptional regulation.
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