Study / S0JC8RM0D2025-04-09

An in vivo systemic massively parallel platform for deciphering animal tissue-specific regulatory function

Ashley R. Brown, Grant A. Fox, Irene M. Kaplow, Alyssa J. Lawler, BaDoi N. Phan et al.

About this study

Introduction: Transcriptional regulation is an important process wherein non-protein coding enhancer sequences play a key role in determining cell type identity and phenotypic diversity. In neural tissue, these gene regulatory processes are crucial for coordinating a plethora of interconnected and regionally specialized cell types, ensuring their synchronized activity in generating behavior. Recognizing the intricate interplay of gene regulatory processes in the brain is imperative, as mounting evidence links neurodevelopment and neurological disorders to non-coding genome regions. While genome-wide association studies are swiftly identifying non-coding human disease-associated loci, decoding regulatory mechanisms is challenging due to causal variant ambiguity and their specific tissue impacts. Methods: Massively parallel reporter assays (MPRAs) are widely used in cell culture to study the non-coding enhancer regions, linking genome sequence differences to tissue-specific regulatory function. However, widespread use in animals encounters significant challenges, including insufficient viral library delivery and library quantification, irregular viral transduction rates, and injection site inflammation disrupting gene expression. Here, we introduce a systemic MPRA (sysMPRA) to address these challenges through systemic intravenous AAV viral delivery. Results: We demonstrate successful transduction of the MPRA library into diverse mouse tissues, efficiently identifying tissue specificity in candidate enhancers and aligning well with predictions from machine learning models. We highlight that sysMPRA effectively uncovers regulatory effects stemming from the disruption of MEF2C transcription factor binding sites, single-nucleotide polymorphisms, and the consequences of genetic variations associated with late-onset Alzheimer's disease. Conclusion: SysMPRA is an effective library delivering method that simultaneously determines the transcriptional functions of hundreds of enhancers in vivo across multiple tissues.

Full author list & citation

Ashley R. Brown, Grant A. Fox, Irene M. Kaplow, Alyssa J. Lawler, BaDoi N. Phan, Lahari Gadey, Morgan E. Wirthlin, Easwaran Ramamurthy, Gemma E. May, Ziheng Chen, Qiao Su, C. Joel McManus, Robert van de Weerd, Andreas R. Pfenning. An in vivo systemic massively parallel platform for deciphering animal tissue-specific regulatory function. 2025-04-09. https://doi.org/10.3389/fgene.2025.1533900

Experiments 2

E0MEVYR11

Systemic AAV-PHP.eB MPRAi in adult mouse tissues

A 461-element MPRAi library with 20 designed barcodes per element was delivered by systemic retro-orbital AAV-PHP.eB injection into adult C57BL/6J mice. DNA and RNA barcode counts from retained brain-region and peripheral-tissue samples quantify library representation and tissue-specific reporter activity.

AAV-MPRA / in vivo MPRAMouse
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E71RJO0Q3

Plasmid MPRAi transfection in HMC3 human microglia

The same 461-element MPRAi plasmid library, with 20 designed barcodes per element, was transfected into five HMC3 human microglial replicates. DNA and RNA barcode counts quantify plasmid representation and reporter activity in the in vitro cell-line arm.

Episomal Plasmid MPRAHuman
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Raw source data 15 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 15 files (ZIP)GSE223293_barcodeCount.dna.geoout.2.3.5.csv.gzGSE223293_series.xmlGSE223306_barcodeCount.rna.geoout.2.3.5.csv.gzGSE223306_series.xmlGSE223307_series.xmlsupplementary_methods.txtsupplementary_methods_DataSheet1.docxsupplementary_table_S1_test_MPRAct_library.xlsxsupplementary_table_S2_MPRAi_library_annotation.csvsupplementary_table_S3_sample_QC.csvsupplementary_table_S4_DNA_barcode_counts.csvsupplementary_table_S5_RNA_barcode_counts.csvsupplementary_table_S6_model_predictions.csvsupplementary_table_S7_MEF2_disruption.csvsupplementary_table_S8_AD_SNP_disruption.csv

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