» Articles » PMID: 15328517

A Novel 1p36.2 Located Gene, APITD1, with Tumour-suppressive Properties and a Putative P53-binding Domain, Shows Low Expression in Neuroblastoma Tumours

Overview
Journal Br J Cancer
Specialty Oncology
Date 2004 Aug 26
PMID 15328517
Citations 12
Authors
Affiliations
Soon will be listed here.
Abstract

Neuroblastoma is characterised by a lack of TP53 mutations and no other tumour suppressor gene consistently inactivated has yet been identified in this childhood cancer form. Characterisation of a new gene, denoted APITD1, in the neuroblastoma tumour suppressor candidate region in chromosome 1p36.22 reveals that APITD1 contains a predicted TFIID-31 domain, representing the TATA box-binding protein-associated factor, TAF(II)31, which is required for p53-mediated transcription activation. Two different transcripts of this gene were shown to be ubiquitously expressed, one of them with an elevated expression in foetal tissues. Primary neuroblastoma tumours of all different stages showed either very weak or no measurable APITD1 expression, contrary to the level of expression observed in neuroblastoma cell lines. A reduced pattern of expression was also observed in a set of various tumour types. APITD1 was functionally tested by adding APITD1 mRNA to neuroblastoma cells, leading to the cell growth to be reduced up to 90% compared to control cells, suggesting APITD1 to have a role in a cell death pathway. Furthermore, we determined the genomic organisation of APITD1. Automated genomic DNA sequencing of the coding region of the gene as well as the promoter sequence in 44 neuroblastoma tumours did not reveal any loss-of-function mutations, indicating that mutations in APITD1 is not a common abnormality of neuroblastoma tumours. We suggest that low expression of this gene might interfere with the ability for apoptosis through the p53 pathway.

Citing Articles

hsa_circ_0077837 Alleviated the Malignancy of Non-Small Cell Lung Cancer by Regulating the miR-1178-3p/APITD1 Axis.

Xu S, Jiang Y, Duan Y J Oncol. 2022; 2022:3902832.

PMID: 35310916 PMC: 8926487. DOI: 10.1155/2022/3902832.


Fanconi Anemia Pathway Genes Advance Cervical Cancer Immune Regulation and Cell Adhesion.

Wang S, Ding B, Cui M, Yan W, Xia Q, Meng D Front Cell Dev Biol. 2021; 9:734794.

PMID: 34869316 PMC: 8634638. DOI: 10.3389/fcell.2021.734794.


Characterization of a FOXG1:TLE1 transcriptional network in glioblastoma-initiating cells.

Dali R, Verginelli F, Pramatarova A, Sladek R, Stifani S Mol Oncol. 2018; 12(6):775-787.

PMID: 29316219 PMC: 5983107. DOI: 10.1002/1878-0261.12168.


A Numerically Subdominant CD8 T Cell Response to Matrix Protein of Respiratory Syncytial Virus Controls Infection with Limited Immunopathology.

Liu J, Haddad E, Marceau J, Morabito K, Rao S, Filali-Mouhim A PLoS Pathog. 2016; 12(3):e1005486.

PMID: 26943673 PMC: 4778879. DOI: 10.1371/journal.ppat.1005486.


The role of genetic and epigenetic alterations in neuroblastoma disease pathogenesis.

Domingo-Fernandez R, Watters K, Piskareva O, Stallings R, Bray I Pediatr Surg Int. 2013; 29(2):101-19.

PMID: 23274701 PMC: 3557462. DOI: 10.1007/s00383-012-3239-7.


References
1.
Martinsson T, Sjoberg R, Hedborg F, Kogner P . Deletion of chromosome 1p loci and microsatellite instability in neuroblastomas analyzed with short-tandem repeat polymorphisms. Cancer Res. 1995; 55(23):5681-6. View

2.
Rodriguez E, Mathew S, Reuter V, Ilson D, Bosl G, Chaganti R . Cytogenetic analysis of 124 prospectively ascertained male germ cell tumors. Cancer Res. 1992; 52(8):2285-91. View

3.
Caron H, Peter M, van Sluis P, Speleman F, de Kraker J, Laureys G . Evidence for two tumour suppressor loci on chromosomal bands 1p35-36 involved in neuroblastoma: one probably imprinted, another associated with N-myc amplification. Hum Mol Genet. 1995; 4(4):535-9. DOI: 10.1093/hmg/4.4.535. View

4.
Abel F, Sjoberg R, Ejeskar K, Krona C, Martinsson T . Analyses of apoptotic regulators CASP9 and DFFA at 1P36.2, reveal rare allele variants in human neuroblastoma tumours. Br J Cancer. 2002; 86(4):596-604. PMC: 2375272. DOI: 10.1038/sj.bjc.6600111. View

5.
Komuro H, Hayashi Y, Kawamura M, Hayashi K, Kaneko Y, KAMOSHITA S . Mutations of the p53 gene are involved in Ewing's sarcomas but not in neuroblastomas. Cancer Res. 1993; 53(21):5284-8. View