p63-related signaling at a glance

ML Fisher, S Balinth, AA Mills - Journal of cell science, 2020 - journals.biologists.com
ABSTRACT p63 (also known as TP63) is a transcription factor of the p53 family, along with
p73. Multiple isoforms of p63 have been discovered and these have diverse functions …

TP63 links chromatin remodeling and enhancer reprogramming to epidermal differentiation and squamous cell carcinoma development

M Yi, Y Tan, L Wang, J Cai, X Li, Z Zeng… - Cellular and Molecular …, 2020 - Springer
Squamous cell carcinoma (SCC) is an aggressive malignancy that can originate from
various organs. TP63 is a master regulator that plays an essential role in epidermal …

Interplay and cooperation between SREBF1 and master transcription factors regulate lipid metabolism and tumor-promoting pathways in squamous cancer

LY Li, Q Yang, YY Jiang, W Yang, Y Jiang, X Li… - Nature …, 2021 - nature.com
Squamous cell carcinomas (SCCs) comprise one of the most common histologic types of
human cancer. Transcriptional dysregulation of SCC cells is orchestrated by tumor protein …

[HTML][HTML] Defining epidermal basal cell states during skin homeostasis and wound healing using single-cell transcriptomics

D Haensel, S Jin, P Sun, R Cinco, M Dragan… - Cell reports, 2020 - cell.com
Our knowledge of transcriptional heterogeneities in epithelial stem and progenitor cell
compartments is limited. Epidermal basal cells sustain cutaneous tissue maintenance and …

Insights into the genetic architecture of the human face

JD White, K Indencleef, S Naqvi, RJ Eller, H Hoskens… - Nature …, 2021 - nature.com
The human face is complex and multipartite, and characterization of its genetic architecture
remains challenging. Using a multivariate genome-wide association study meta-analysis of …

Tumor suppressor p53: from engaging DNA to target gene regulation

MA Sammons, TAT Nguyen, SS McDade… - Nucleic acids …, 2020 - academic.oup.com
The p53 transcription factor confers its potent tumor suppressor functions primarily through
the regulation of a large network of target genes. The recent explosion of next generation …

TFAP2C-and p63-dependent networks sequentially rearrange chromatin landscapes to drive human epidermal lineage commitment

L Li, Y Wang, JL Torkelson, G Shankar, JM Pattison… - Cell Stem Cell, 2019 - cell.com
Tissue development results from lineage-specific transcription factors (TFs) programming a
dynamic chromatin landscape through progressive cell fate transitions. Here, we define …

Epidermal stem cells in wound healing and regeneration

R Yang, J Wang, X Chen, Y Shi, J Xie - Stem cells international, 2020 - Wiley Online Library
Skin stem cells distributed in the basal layer of the epidermis and hair follicles are important
cell sources for skin development, metabolism, and injury repair. At present, great progress …

A scalable and cGMP-compatible autologous organotypic cell therapy for Dystrophic Epidermolysis Bullosa

G Neumayer, JL Torkelson, S Li, K McCarthy… - Nature …, 2024 - nature.com
Abstract We present Dystrophic Epidermolysis Bullosa Cell Therapy (DEBCT), a scalable
platform producing autologous organotypic iPS cell-derived induced skin composite (iSC) …

Gibbin mesodermal regulation patterns epithelial development

A Collier, A Liu, J Torkelson, J Pattison, S Gaddam… - Nature, 2022 - nature.com
Proper ectodermal patterning during human development requires previously identified
transcription factors such as GATA3 and p63, as well as positional signalling from regional …