Differentiation signals induce APOBEC3A expression via GRHL3 in squamous epithelia and squamous cell carcinoma.
Nicola SmithIan ReddinPaige PolicelliSunwoo OhRémi BuissonNur ZainalEmma HowesBenjamin JenkinsIan TracyBenjamin P SharpeDamian AmendraChristopher J HanleyEmma KingGareth J ThomasMark EdmondSimak AliKe ZhengNagayasau EgawaJohn DoorbarMichael CarpenterReuben Stewart HarrisAnjali RaoSangeetha MahadevanTim R FentonPublished in: Research square (2024)
Two APOBEC (apolipoprotein-B mRNA editing enzyme catalytic polypeptide-like) DNA cytosine deaminase enzymes (APOBEC3A and APOBEC3B) generate somatic mutations in cancer, driving tumour development and drug resistance. Here we used single cell RNA sequencing to study APOBEC3A and APOBEC3B expression in healthy and malignant mucosal epithelia, validating key observations with immunohistochemistry, spatial transcriptomics and functional experiments. Whereas APOBEC3B is expressed in keratinocytes entering mitosis, we show that APOBEC3A expression is confined largely to terminally differentiating cells and requires Grainyhead-like transcription factor 3 (GRHL3). Thus, in normal tissue, neither deaminase appears to be expressed at high levels during DNA replication, the cell cycle stage associated with APOBEC -mediated mutagenesis. In contrast, we show that in squamous cell carcinoma tissues, there is expansion of GRHL3 expression and activity to a subset of cells undergoing DNA replication and concomitant extension of APOBEC3A expression to proliferating cells. These findings indicate a mechanism for acquisition of APOBEC3A mutagenic activity in tumours.
Keyphrases
- poor prognosis
- squamous cell carcinoma
- single cell
- induced apoptosis
- cell cycle
- transcription factor
- cell cycle arrest
- binding protein
- crispr cas
- gene expression
- long non coding rna
- computed tomography
- endoplasmic reticulum stress
- dna methylation
- lymph node metastasis
- copy number
- oxidative stress
- magnetic resonance imaging
- low grade
- squamous cell