Study / S6R5UIAD92021-04-22

The cis-regulatory effects of modern human-specific variants

Carly V Weiss, Lana Harshman, Fumitaka Inoue, Hunter B Fraser, Dmitri A Petrov et al.

About this study

The Neanderthal and Denisovan genomes enabled the discovery of sequences that differ between modern and archaic humans, the majority of which are noncoding. However, our understanding of the regulatory consequences of these differences remains limited, in part due to the decay of regulatory marks in ancient samples. Here, we used a massively parallel reporter assay in embryonic stem cells, neural progenitor cells, and bone osteoblasts to investigate the regulatory effects of the 14,042 single-nucleotide modern human-specific variants. Overall, 1791 (13%) of sequences containing these variants showed active regulatory activity, and 407 (23%) of these drove differential expression between human groups. Differentially active sequences were associated with divergent transcription factor binding motifs, and with genes enriched for vocal tract and brain anatomy and function. This work provides insight into the regulatory function of variants that emerged along the modern human lineage and the recent evolution of human gene expression.

Full author list & citation

Carly V Weiss, Lana Harshman, Fumitaka Inoue, Hunter B Fraser, Dmitri A Petrov, Nadav Ahituv, David Gokhman. The cis-regulatory effects of modern human-specific variants. 2021-04-22. https://doi.org/10.7554/eLife.63713

Experiments 3

E1KGB4JEC

Modern-versus-archaic lentiMPRA in H1 embryonic stem cells

The study assayed 200-bp archaic/ancestral and modern/derived sequence pairs centered on fixed or nearly fixed modern-human-specific single-nucleotide variants in H1 (WA01) embryonic stem cells. Three independent lentiMPRA infections were quantified through barcode RNA/DNA abundance.

Integrated lentiMPRAHumanhg19
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E40SOUTOB

Modern-versus-archaic lentiMPRA in H1-derived neural progenitor cells

The study assayed 200-bp archaic/ancestral and modern/derived sequence pairs centered on fixed or nearly fixed modern-human-specific single-nucleotide variants in neural progenitor cells differentiated from H1 embryonic stem cells. Three independent lentiMPRA infections were quantified through barcode RNA/DNA abundance.

Integrated lentiMPRAHumanhg19
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E6P0AOW2D

Modern-versus-archaic lentiMPRA in primary fetal osteoblasts

The study assayed 200-bp archaic/ancestral and modern/derived sequence pairs centered on fixed or nearly fixed modern-human-specific single-nucleotide variants in primary fetal human osteoblasts. Three independent lentiMPRA infections were quantified through barcode RNA/DNA abundance.

Integrated lentiMPRAHumanhg19
Explore data

Raw source data 4 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 4 files (ZIP)elife-63713-supp1-v1.xlsxGSE152404_family.soft.gzGSE152404_Oligos_library_joint_noDups.fasta.gzGSE152404_ProcessedData.xlsx

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