Please use this identifier to cite or link to this item: http://repositorio.cualtos.udg.mx:8080/jspui/handle/123456789/1749
Title: GnomAD Missense Variants of Uncertain Significance: Implications for p53 Stability and Phosphorylation
Authors: García Ayala, Fernando Daniel
Ayala Madrigal, María de la Luz
Peregrina Sandoval, Jorge
Moreno Ortiz, José Miguel
González Mercado, Anahí
Gutiérrez Angulo, Melva
Keywords: TP53 gene
VUS
phosphorylation sites
protein stability
gnomAD
Issue Date: Aug-2025
Publisher: MDPI
Citation: García-Ayala, F.D.; Ayala-Madrigal, M.d.l.L.; Peregrina-Sandoval, J.; Moreno-Ortiz, J.M.; González-Mercado, A.; Gutiérrez-Angulo, M. GnomAD Missense Variants of Uncertain Significance: Implications for p53 Stability and Phosphorylation. Int. J. Mol. Sci. 2025, 26, 7455. https:// doi.org/10.3390/ijms26157455
Series/Report no.: Internactional Journal of Molecular Sciences;Volume 26, Issue 15 (August-1 2025)
Abstract: The TP53 gene, frequently mutated across multiple cancer types, plays a pivotal role in regulating the cell cycle and apoptosis through its protein, p53. Missense variants of uncertain significance (VUSs) in TP53 present challenges in understanding their impact on protein function and complicate clinical interpretation. This study aims to analyze the effects of missense VUSs in p53, as reported in the gnomAD database, with a specific focus on their impact on protein stability and phosphorylation. In this study, 33 missense VUSs in TP53 reported in the gnomAD database were analyzed using in silico tools, including PhosphositePlus v6.7.4, the Kinase Library v0.0.11, and Dynamut2. Of these analyzed variants, five disrupted known phosphorylation sites, while another five created new consensus sequences for phosphorylation. Moreover, 20 variants exhibited a moderate destabilizing effect on the protein structure. At least three missense VUSs were identified as potentially affecting p53 function, which may contribute to cancer development. These findings highlight the importance of integrating in silico structural and functional analysis to assess the pathogenic potential of missense VUSs.
Description: Artículo
URI: http://repositorio.cualtos.udg.mx:8080/jspui/handle/123456789/1749
ISSN: 1422-0067
Appears in Collections:3201 Artículos

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