#MPRAs
New preprint from Shendure Lab on Locus-Scale aka Long-@$$ MPRAs led by the amazing Abby McGee & @carinabiar.bsky.social Most MPRAs test ~300 bp fragments next to a promoter. But real enhancers are bigger, act combinatorially and from a distance. 1/n www.biorxiv.org/content/10.6...
July 30, 2026 at 3:13 PM
So excited to see Yawei's manuscript on long-range MPRAs out! Some really great insights into distal enhancer regulation 🙂
🚨PRE-PRINT 🧪🧬🖥️👩‍🔬
Long-range massively parallel reporter assay reveals rules of distal enhancer-promoter interactions
From Barak Cohen's lab at @washu.bsky.social

Read the pre-print 👇
doi.org/10.1101/2025...
Learn more about the research from the Cohen lab: bclab.wustl.edu
April 23, 2025 at 9:10 PM
My preprint on keju, a statistical tool for Massively Parallel Reporter Assay (MPRA) data, is out! keju improves sensitivity, calibration, and reliability over previous methods by closely modeling important uncertainty sources in MPRAs. Check it out: www.biorxiv.org/content/10.6... (1/n)
www.biorxiv.org
March 2, 2026 at 6:59 PM
Massively parallel reporter assays (MPRAs) testing >680,000 sequences combined with machine learning to improve regulatory element & variant effect prediction. Amazing work by @vagar.bsky.social, Fumitaka Inoue, @jshendure.bsky.social and many others as part of ENCODE.
www.nature.com/articles/s41...
Massively parallel characterization of transcriptional regulatory elements - Nature
Lentivirus-based reporter assays for 680,000 regulatory sequences from three cell lines coupled to machine-learning models lead to insights into the grammar of cis-regulatory elements.
www.nature.com
January 15, 2025 at 5:05 PM
MPRAbase (mprabase.ucsf.edu) , a customized database for massively parallel reporter assays (MPRAs) to easily find and download MPRA data. Amazing work by Jingjing Zhao, Fotis Baltoumas, Georgios Pavlopoulos, @vagar.bsky.social, ilias Georgakopoulos-Soares & others.

genome.cshlp.org/content/earl...
MPRAbase a Massively Parallel Reporter Assay database
An international, peer-reviewed genome sciences journal featuring outstanding original research that offers novel insights into the biology of all organisms
genome.cshlp.org
April 22, 2025 at 8:51 PM
MPRAs are the gold-standard tool for measuring how DNA sequences drive gene expression and prioritizing variant effects.
In this preprint we asked: does it matter WHERE you place a variant in an MPRA?
Spoiler: yes, and it might lead you to miss disease-causing variants. 1/6
doi.org/10.64898/202...
Position-dependent variant effects reveal importance of context in genomic regulation
Gene expression is governed by the DNA sequence, which is read out through complex interactions between transcription factors (TFs), co-activators, and chromatin. Massively Parallel Reporter Assays (MPRAs) provide a high-throughput framework for functionally characterizing how regulatory DNA sequences impact the expression of a model gene. MPRAs have also proven to be useful for measuring the effects of genetic variation, where each allele is typically tested in the center of ~200 bp of genomic context cloned into the MPRA, but the impact of variant position and local context remains largely unexplored. In this study, we systematically investigate how shifting the position of a variant within an MPRA probe influences its regulatory activity using models that predict expression in MPRAs from DNA sequence. We find that while the direction of variant effects is usually preserved across positions, the magnitude of expression changes can vary substantially depending on where the variant is placed within the construct. This positional bias appears to be largely explained by the strong position-dependent activity of TFs whose binding the variants perturb. In a subset of cases, interactions consistent with cooperativity between TFs also contribute to position-specific effects. ~1% of variants appear to disrupt RNA polymerase III (Pol III) promoters within Alu elements, resulting in position-specificity because both A and B boxes are required for function and exclusion of either motif due to window shifts disrupts the variants' effects. However, we saw little evidence to support the hypothesis that the positional dependence of variant effects resulted from the redundancy of motifs. Overall, our study demonstrates the complexity of cis-regulatory grammar and how it can confound the interpretation of regulatory variants. ### Competing Interest Statement R.T. has filed intellectual property related to MPRA and MPRA models. The other authors declare no competing interests.
biorxiv.org
March 18, 2026 at 7:16 PM
This preprint is a collaboration with Tony Mustoe's lab at Baylor Medical School and a little cautionary tale for everyone using MPRAs and possible cryptic splicing in such reporters, or reporters in general. This one is influenced by AU-rich sequences.

www.biorxiv.org/content/10.1...
November 12, 2024 at 12:17 PM
Brief PSA for the functional genomics community: if you are profiling complex libraries with >1 internal components (e.g., enhancer+barcodes in MPRAs) delivered via AAVs, be aware that there might be substantial unlinking within your libraries if you packaged as a pool! doi.org/10.1101/2025...
January 17, 2025 at 3:53 PM
We sys compare it to plasmid-based MPRAs and deep learning models (Enformer @DeepMind), finding new bio insights & suggesting ways to improve predictions.
We resolve expression differences down to distinct TF configurations on DNA, highlighting shortcomings of MPRAs and DL tools.
December 16, 2024 at 2:39 PM
🧬🔍How can enhancers achieve tissue-specific activity?
We use MPRAs of synthetic enhancers to derive interpretable rules on TFBS arrangement 🚦 and discover that negative synergies drive specificity in hematopoiesis 🩸. Shoutout to @Robert Frömel & @larsplus.bsky.social for leading this work 🦹🦸.
Out in Cell @cp-cell.bsky.social: Design principles of cell-state-specific enhancers in hematopoiesis
🧬🩸 screen of fully synthetic enhancers in blood progenitors
🤖 AI that creates new cell state specific enhancers
🔍 negative synergies between TFs lead to specificity!
www.cell.com/cell/fulltex...
🧵
Design principles of cell-state-specific enhancers in hematopoiesis
Screen of minimalistic enhancers in blood progenitor cells demonstrates widespread dual activator-repressor function of transcription factors (TFs) and enables the model-guided design of cell-state-sp...
www.cell.com
May 9, 2025 at 6:39 AM
Our collaboration with Tony Mustoe's lab us out today. MPRA libraries and possible cryptic splicing in MPRA reporters, or reporters in general. The additional novelty here is that such events are controlled or influenced by AU-rich sequences.

www.nature.com/articles/s41...
U-rich elements drive pervasive cryptic splicing in 3’ UTR massively parallel reporter assays - Nature Communications
Massively parallel reporter assays (MPRAs) are powerful technologies for measuring the impact of non-coding sequences on gene expression. Here, the authors demonstrate that MPRA reporters often underg...
www.nature.com
July 25, 2025 at 10:17 AM
6/ To investigate this, Charlie built ~50,000 mutant versions of these elements and tested them with MPRAs. Round 1: chop the 260mers into thousands of smaller pieces and ask which ones still send RNA to neurites.
June 11, 2026 at 3:01 PM
Comparison between a neuronal massively parallel reporter assay for 50,000 sequences and 20,000 variants with mouse enhancer assays provide complimentary information. Great work by Michael Kosicki, Dianne Laboy Cintrón, Len Pennacchio, Martin Kircher lab & many others.
www.nature.com/articles/s41...
Massively parallel reporter assays and mouse transgenic assays provide correlated and complementary information about neuronal enhancer activity - Nature Communications
MPRAs and in vivo transgenic mouse assays are two potentially complementary ways to assay the impact of noncoding variants. Here, authors find a strong and specific correlation between the assays in n...
www.nature.com
May 24, 2025 at 7:08 PM
4/ A few years back we paired this with massively parallel reporter assays (MPRAs) and found ~260 nt sequence elements in the 3′ UTRs of several genes that are both necessary AND sufficient to send an RNA to neurites. academic.oup.com/nar/article/...
June 11, 2026 at 3:00 PM
mRNA 5'UTR functions, large scale, and feature detection to predict effect on translation - IN VIVO 🔥

awesome work from the awesome Madalena Reimão-Pinto & Alex Schier and colleagues 👏

MPRAs in multicellular organisms
translation specificity 🤝 cell type specificity
www.cell.com/developmenta...
www.cell
January 15, 2025 at 10:25 PM
Massively parallel reporter assay for mapping gene-specific regulatory regions at single-nucleotide resolution
Massively parallel reporter assay for mapping gene-specific regulatory regions at single-nucleotide resolution
Integrated locus-specific and mutational MPRAs reveal regulatory modules and nucleotide determinants governing cell type-specific gene expression, providing a scalable framework for mapping cis-regulatory...
buff.ly
March 4, 2026 at 6:01 AM
New study combines MPRAs+RNAseq to functionally validate 94 rare nc variants from blood trait GWAS -> identification of 22 w/ direct regulatory effects. Great example of what can be done from association work to functional validation!
🔗 www.cell.com/cell-reports...
(ft @mikeinouye.bsky.social et al)
February 9, 2026 at 11:56 AM
Great technology feature by @eisensteinium.bsky.social in @nature.com on the use of massively parallel reporter assays (MPRAs) to characterize regulatory elements featuring our work and many other amazing labs.
www.nature.com/articles/d41...
These powerful tools reveal the ‘control knobs’ of the genome
By accelerating the identification of DNA sequences that control gene expression, assays are revealing the hidden grammar of the regulatory genome — and giving scientists the means to rewrite it.
www.nature.com
May 12, 2026 at 1:07 AM
Depending on your priors on adaptation, introgression (and MPRAs too, I guess), the results may or may not surprise you, but either way, please get in touch if you have thoughts or comments about what we've done. 🧬🖥️🧪
May 5, 2025 at 3:42 AM
Only ~31% of our training data was needed to get within 5% of max model performance. Readouts from locus-scale libraries like this one may be be a genuinely useful data type for deep learning models of gene regulation, orthogonal to biochemical assays like ATAC-seq and conventional MPRAs. 11/n
July 30, 2026 at 3:13 PM
Before we break for morning coffee, Lea Starita from the University of Washington takes the stage to talk about how novel calibration methods are driving resolution of variants of unknown significance (VUS).

#VariantEffect26
#MAVEs #VAMPseq #SGE #MPRAs
#AtlasOfVariantEffectsAlliance
March 25, 2026 at 11:58 PM
We substantially revised our active learning manuscript. A brief summary of what's new.

TLDR: several new analyses, benchmarking w a 2nd MPRA dataset, and a refocused argument on active learning to leverage the capacity of MPRAs to generate large datasets.

www.biorxiv.org/content/10.1...

1/8

🧬🔄
February 20, 2024 at 6:55 PM
MPRAnalyze offers a powerful statistical framework for Massively Parallel Reporter Assays (MPRAs) to study enhancer activity.

From quantifying activity to comparing across conditions, it helps researchers uncover how enhancers drive gene regulation.

bioconductor.org/packages/rel...
MPRAnalyze
MPRAnalyze provides statistical framework for the analysis of data generated by Massively Parallel Reporter Assays (MPRAs), used to directly measure enhancer activity. MPRAnalyze can be used for quant...
bioconductor.org
August 22, 2025 at 5:58 PM
Great collaboration with Dougherty and Pavlovic Djuranovic
labs on using MPRAs to look into non-coding mutations.

Approaches for identification of 5′ UTR mutations impacting translation and protein production from neurodevelopmental disorder genes
www.sciencedirect.com/science/arti...
Approaches for identification of 5′ UTR mutations impacting translation and protein production from neurodevelopmental disorder genes
Coding mutations can cause neurodevelopmental disorders (NDDs), including autism. Yet, predicting which non-coding (e.g., 5′ untranslated region [UTR]…
www.sciencedirect.com
December 5, 2025 at 2:49 PM
NA: So over to massively parallel reporter assays (MPRAs) plotting RNA barcode over DNA barcode to identify enhancer activity - many publications - so what can you do? #LorneGenome25
February 18, 2025 at 4:14 AM