Endogenous retrovirus control of calbindin is essential for human early embryogenesis

The cis-regulatory potential of human endogenous retroviruses (HERVs) that have accumulated in our genome affects diverse host processes, including embryonic development and malignancy, where HERV epigenetic control is reduced. Non–small cell lung cancer optimal growth requires cancer cell–intrinsic expression of the calcium-binding protein calbindin under the control of a HERVH integrant on chromosome 8q21.3. Chimeric transcription of HERVH and CALB1 , encoding calbindin, is also observed in human embryonic stem cells (ESCs), but its significance remained uncertain. Here, we show that HERVH integration on 8q21.3 during Homininae evolution coincides with acquisition of expression of CALB1 in preimplantation embryos. We further show that CALB1 expression is critical for human ESC growth and the prevention of cellular senescence and for the formation of ESC-derived preimplantation blastoids and postgastrulation amnioids. Thus, the co-option of HERVH 8q21.3 cis-regulatory activity in lung cancer may echo its essential requirement for human embryo development.

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Journal
Science Advances
Published
2026-10-07
DOI
https://doi.org/10.1126/sciadv.aee4523
Primary Topic
Chromosomal and Genetic Variations
Type
article
Field-Weighted Citation Impact
0.00
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article

Endogenous retrovirus control of calbindin is essential for human early embryogenesis

Eduardo Serna-Morales, Silvia D. M. Santos, Judith Pape, Sara Tamagno et al.
Science Advances
Chromosomal and Genetic Variations
article

Endogenous retrovirus control of calbindin is essential for human early embryogenesis

Eduardo Serna-Morales, Silvia D. M. Santos, Judith Pape, Sara Tamagno, Lyn E. Healy, George Kassiotis, Alberto Elósegui-Artola, Afshan McCarthy, Borzo Gharibi, Ruta Meleckyte, Tobias Plowman, Kathy K. Niakan, Elias Copin, Laura Doglio, Rachael Thompson
article en

Abstract

The cis-regulatory potential of human endogenous retroviruses (HERVs) that have accumulated in our genome affects diverse host processes, including embryonic development and malignancy, where HERV epigenetic control is reduced. Non–small cell lung cancer optimal growth requires cancer cell–intrinsic expression of the calcium-binding protein calbindin under the control of a HERVH integrant on chromosome 8q21.3. Chimeric transcription of HERVH and CALB1 , encoding calbindin, is also observed in human embryonic stem cells (ESCs), but its significance remained uncertain. Here, we show that HERVH integration on 8q21.3 during Homininae evolution coincides with acquisition of expression of CALB1 in preimplantation embryos. We further show that CALB1 expression is critical for human ESC growth and the prevention of cellular senescence and for the formation of ESC-derived preimplantation blastoids and postgastrulation amnioids. Thus, the co-option of HERVH 8q21.3 cis-regulatory activity in lung cancer may echo its essential requirement for human embryo development.

Science AdvancesVol. 12(41)
Babraham Institute (GB), King's College London (GB), Wellcome/MRC Cambridge Stem Cell Institute (GB), University of Cambridge (GB), The Francis Crick Institute (GB), The Loke Centre for Trophoblast Research (GB), Imperial College London (GB)
Openalex Percentile: Top 14%
Chromosomal and Genetic Variations
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