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Polymorphisms in TPT1 Pathways in Pediatric Astrocytomas

Тип публикацииJournal Article
Дата публикации2023-01-30
scimago Q1
wos Q2
white level БС1
SJR1.148
CiteScore7.7
Impact factor3.7
ISSN17590914
General Neuroscience
Neurology (clinical)
Краткое описание

Central nervous system tumors, especially astrocytomas, are the solid neoplasms with the highest incidence and mortality rates in childhood. The diagnosis is based on histopathological characteristics, but molecular methods have been increasingly used. Translationally controlled tumor protein (TCTP) protein, encoded by the tumor protein, translationally controlled 1 ( TPT1) gene, is a multifunctional protein with an important physiological role in the cell cycle. Expression of this protein has been associated with several neoplasms, including astrocytomas in adults. However, the role of this protein in pediatric astrocytomas is largely unknown. We aim to evaluate in cases of pediatric astrocytomas, the frequency of polymorphisms in the TPT1 gene and other genes associated with its molecular pathways, such as MTOR, MDM2, TP53, and CDKN1A, correlating it with protein expression and clinical variables, in formalin-fixed, paraffin-embedded (FFPE) samples. These samples were submitted to genotyping and immunohistochemistry analyses. The most revealing results refer to the MDM2 gene, rs117039649 [G/C], in which C polymorphic allele was observed only in the glioblastomas ( p = .028). The CDKN1A gene, rs3176334 [T/C] presented a homozygous polymorphic genotype only in high-grade astrocytomas, when infiltrating tumors were compared ( p = .039). The immunohistochemical expression of cytoplasmic MDM2 correlated with better survival rates in patients with glioblastoma ( p = .018). The presence of polymorphisms in the MDM2 and CDKN1A genes, as well as a specific correlation between MDM2 expression, suggests a likely association with risk in pediatric astrocytomas. This study sought the probable role involved in the TCTP pathway, and associated proteins, in the tumorigenesis of pediatric astrocytomas, and some could have potential impact as prognostic markers in these patients.

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Morais de Castro E. et al. Polymorphisms in TPT1 Pathways in Pediatric Astrocytomas // ASN Neuro. 2023. Vol. 15. p. 175909142311534.
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Morais de Castro E., Barbosa L. V., Simoneti Fonseca A., Nagashima S., Busatta Vaz de Paula C., Zeni R., Panini do Carmo L. A., Cavalli L. R., Bleggi Torres L. F., Senff Ribeiro A., de Noronha L., Machado-Souza C. Polymorphisms in TPT1 Pathways in Pediatric Astrocytomas // ASN Neuro. 2023. Vol. 15. p. 175909142311534.
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TY - JOUR
DO - 10.1177/17590914231153481
UR - https://doi.org/10.1177/17590914231153481
TI - Polymorphisms in TPT1 Pathways in Pediatric Astrocytomas
T2 - ASN Neuro
AU - Morais de Castro, Eduardo
AU - Barbosa, Leonardo Vinícius
AU - Simoneti Fonseca, Aline
AU - Nagashima, Seigo
AU - Busatta Vaz de Paula, Caroline
AU - Zeni, Rafaela
AU - Panini do Carmo, Letícia Arianne
AU - Cavalli, Luciane Regina
AU - Bleggi Torres, Luiz Fernando
AU - Senff Ribeiro, Andrea
AU - de Noronha, Lucia
AU - Machado-Souza, Cleber
PY - 2023
DA - 2023/01/30
PB - Portland Press
SP - 175909142311534
VL - 15
PMID - 36714975
SN - 1759-0914
ER -
BibTex
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BibTex (до 50 авторов) Скопировать
@article{2023_Morais de Castro,
author = {Eduardo Morais de Castro and Leonardo Vinícius Barbosa and Aline Simoneti Fonseca and Seigo Nagashima and Caroline Busatta Vaz de Paula and Rafaela Zeni and Letícia Arianne Panini do Carmo and Luciane Regina Cavalli and Luiz Fernando Bleggi Torres and Andrea Senff Ribeiro and Lucia de Noronha and Cleber Machado-Souza},
title = {Polymorphisms in TPT1 Pathways in Pediatric Astrocytomas},
journal = {ASN Neuro},
year = {2023},
volume = {15},
publisher = {Portland Press},
month = {jan},
url = {https://doi.org/10.1177/17590914231153481},
pages = {175909142311534},
doi = {10.1177/17590914231153481}
}
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