In vivo Tracking of Clonal Dynamics in UV-Induced Skin Carcinogenesis Reveals Tumor Development from Goliath Clades

While the genetic paradigm of cancer is powerful, it remains incomplete. For example, high mutational burdens are commonplace in homeostatically-stable epithelia, but the presence of driver mutations alone does not result in cancer. Here, we revealed additional factors contributing to the eco-evolutionary dynamics of carcinogenesis. The dynamics of carcinogenesis were tracked from initiation to emergence using a UV-driven model of squamous cell carcinoma, via in vivo serial 3D reconstruction of >25,000 fluorescently labeled keratinocyte clades (cells expressing a single fluorophore and related by descent). While median and mean clade sizes (8-16 cells) differed little with UV exposure, UV exposure resulted in large goliath clades (>~4.2×106 µm3; >500 cells). Of note, goliath formation preceded the acquisition of established driver mutations, and only a subset of goliaths exhibited both greater mutational loads and dense aggregations of cells (micro-lumps). Of 21 randomly selected goliath clades in macroscopically normal-appearing skin tracked weekly, 2 developed into visible lesions, while an adaptation of the Drake equation placed the probability of this occurring at less than 10-6. The earliest molecular signatures based on single-cell RNA-sequencing of irradiated skin reflected epidermal de-differentiation and immunosuppression. Overall, this study documents skin cancer initiation due to UV exposure from changes in clade distribution through macroscopic lesion development arising from goliath clades. These data highlight these transitions in relation to known driver mutations and transcriptomic changes, suggesting a possible explanation for why cancers are rare relative to the degree of somatic mosaicism present.

Authors

Institutions

Publication Details

Journal
Cancer Research
Published
2026-09-18
DOI
https://doi.org/10.1158/0008-5472.can-25-3790
Primary Topic
Skin Protection and Aging
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

In vivo Tracking of Clonal Dynamics in UV-Induced Skin Carcinogenesis Reveals Tumor Development from Goliath Clades

Elsa R. Flores, Y. Ann Chen, Omar Chavez Chiang, Karol Prieto et al.
Cancer Research
Skin Protection and Aging
article

In vivo Tracking of Clonal Dynamics in UV-Induced Skin Carcinogenesis Reveals Tumor Development from Goliath Clades

Elsa R. Flores, Y. Ann Chen, Omar Chavez Chiang, Karol Prieto, Leticia Tordesillas, Stanislav Avdieiev, Robert A. Gatenby, Kenneth Y. Tsai, Noemi Andor, Nihir Patel, Christopher J. Whelan, Joel S. Brown, Zhihua Chen, Sofia Silva Simoes, Luiza Silva. Simoes
article en

Abstract

While the genetic paradigm of cancer is powerful, it remains incomplete. For example, high mutational burdens are commonplace in homeostatically-stable epithelia, but the presence of driver mutations alone does not result in cancer. Here, we revealed additional factors contributing to the eco-evolutionary dynamics of carcinogenesis. The dynamics of carcinogenesis were tracked from initiation to emergence using a UV-driven model of squamous cell carcinoma, via in vivo serial 3D reconstruction of >25,000 fluorescently labeled keratinocyte clades (cells expressing a single fluorophore and related by descent). While median and mean clade sizes (8-16 cells) differed little with UV exposure, UV exposure resulted in large goliath clades (>~4.2×106 µm3; >500 cells). Of note, goliath formation preceded the acquisition of established driver mutations, and only a subset of goliaths exhibited both greater mutational loads and dense aggregations of cells (micro-lumps). Of 21 randomly selected goliath clades in macroscopically normal-appearing skin tracked weekly, 2 developed into visible lesions, while an adaptation of the Drake equation placed the probability of this occurring at less than 10-6. The earliest molecular signatures based on single-cell RNA-sequencing of irradiated skin reflected epidermal de-differentiation and immunosuppression. Overall, this study documents skin cancer initiation due to UV exposure from changes in clade distribution through macroscopic lesion development arising from goliath clades. These data highlight these transitions in relation to known driver mutations and transcriptomic changes, suggesting a possible explanation for why cancers are rare relative to the degree of somatic mosaicism present.

Cancer Research
Moffitt Cancer Center (US)
Openalex Percentile: Top 9%
Skin Protection and Aging
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.