Unveiling the developmental and tumor-suppressive roles of the p53 variant p53psi

C Chiara Gorrini (Princess Margaret Cancer Centre, University Health Network) S Soode Jafari (Princess Margaret Cancer Centre, University Health Network) G Gordon Duncan (Princess Margaret Cancer Centre, University Health Network) B Bryan Snow (Princess Margaret Cancer Centre, University Health Network) L Liam Hendrikse (Princess Margaret Cancer Centre, University Health Network) L Louis McLoughlin (School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds) J Jillian Haight (Princess Margaret Cancer Centre, University Health Network) A Andrew Wakeham (Princess Margaret Cancer Centre, University Health Network) C Chantal Tobin (Princess Margaret Cancer Centre, University Health Network) A Andrew Elia (Princess Margaret Cancer Centre, University Health Network) P Paramesh Ramachandran (Princess Margaret Cancer Centre, University Health Network) R Rhoda Law (Princess Margaret Cancer Centre, University Health Network) B Bevan Gang (Princess Margaret Cancer Centre, University Health Network) T Tsai-Ling Lu (Princess Margaret Cancer Centre, University Health Network) I Isabel Morgado-Palacin (Princess Margaret Cancer Centre, University Health Network) A Annick You-Ten (Princess Margaret Cancer Centre, University Health Network) T Thorsten Berger (Princess Margaret Cancer Centre, University Health Network) R Raffaella Sordella (Cold Spring Harbor Laboratory) T Tak W. Mak (Princess Margaret Cancer Centre, University Health Network)

Abstract

Through alternative splicing, the TP53 gene can generate multiple protein isoforms with distinct biochemical properties. The p53psi isoform has been identified as a shorter variant than full-length p53 as it lacks nuclear localization, oligomerization, and part of the DNA binding domains due to the use of an alternative 3’ splice site in intron 6. Several TP53-truncating mutations, including those producing p53psi, have been detected in a significant proportion of human tumors. However, the mechanistic roles of these truncated p53 proteins remain poorly understood. Here, we describe the generation and analysis of a genetically engineered mouse model that expresses the p53psi protein in place of the full-length p53 protein. In the C57/BL6J genetic background, mice heterozygous for the targeted p53psi allele (p53 KI/+ ) appear phenotypically normal, survive to adulthood, and reproduce. However, heterozygote matings fail to yield viable p53psi homozygote knock-in (p53 KI/KI ) pups, indicating that forced p53psi expression disrupts embryogenesis. Timed matings revealed that homozygous p53psi expression is embryonically lethal on day E16.5. E14.5-16.5 embryos were pale, reduced in size, and exhibited exencephaly, a defect typically associated with neural tube closure failure. Mouse embryonic fibroblasts (MEFs) derived from p53psi embryos and transformed with the E1A and H-RasV12 oncogenes formed tumors with a decreased growth rate compared to their p53 null counterparts, suggesting that p53psi retains at least some tumor-suppressive functions. Our mechanistic studies suggest that p53psi modulates tumorigenesis by triggering senescence. These findings provide insights into the role of the p53psi variant, paving the way for a better interpretation of TP53 mutational patterns in human cancers.

Article Details

Volume / Issue Vol. 123, Issue 13
Published March 31, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (19)

C

Chiara Gorrini

Princess Margaret Cancer Centre, University Health Network

S

Soode Jafari

Princess Margaret Cancer Centre, University Health Network

G

Gordon Duncan

Princess Margaret Cancer Centre, University Health Network

B

Bryan Snow

Princess Margaret Cancer Centre, University Health Network

L

Liam Hendrikse

Princess Margaret Cancer Centre, University Health Network

L

Louis McLoughlin

School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds

J

Jillian Haight

Princess Margaret Cancer Centre, University Health Network

A

Andrew Wakeham

Princess Margaret Cancer Centre, University Health Network

C

Chantal Tobin

Princess Margaret Cancer Centre, University Health Network

A

Andrew Elia

Princess Margaret Cancer Centre, University Health Network

P

Paramesh Ramachandran

Princess Margaret Cancer Centre, University Health Network

R

Rhoda Law

Princess Margaret Cancer Centre, University Health Network

B

Bevan Gang

Princess Margaret Cancer Centre, University Health Network

T

Tsai-Ling Lu

Princess Margaret Cancer Centre, University Health Network

I

Isabel Morgado-Palacin

Princess Margaret Cancer Centre, University Health Network

A

Annick You-Ten

Princess Margaret Cancer Centre, University Health Network

T

Thorsten Berger

Princess Margaret Cancer Centre, University Health Network

R

Raffaella Sordella

Cold Spring Harbor Laboratory

T

Tak W. Mak

Princess Margaret Cancer Centre, University Health Network