Back to search

Loss of Heterozygosity in the VNTR Region of Intron 1 of P53 in two Retinoblastoma Cases

Data up to Jan 2025

Published1996
Citations3
References15

Total Citations Per Year

Abstract

References (15)

Expression of recessive alleles by chromosomal mechanisms in retinoblastoma

1983 • 1,952 citations

Phosphorylation of the retinoblastoma gene product is modulated during the cell cycle and cellular differentiation

1989 • 990 citations

Second primary neoplasms in patients with retinoblastoma

1986 • 563 citations

Genetic Origin of Mutations Predisposing to Retinoblastoma

1985 • 363 citations

Human p53 is phosphorylated by p60-cdc2 and cyclin B-cdc2.

1990 • 353 citations

Analysis of DNA sequences in forty-year-old paraffin-embedded thin-tissue sections: a bridge between molecular biology and classical histology.

1988 • 190 citations

Tumor suppressor genes: the p53 and retinoblastoma sensitivity genes and gene products

1990 • 175 citations

Pleiotropic effects of the gene for retinoblastoma

1974 • 139 citations

The genetics of retinoblastoma, revisited.

1994 • 78 citations

Further evidence of no linkage between schizophrenia and the dopamine D3 receptor gene locus

1994 • 61 citations

Polymerase chain reaction detection of a highly polymorphic VNTR segment in intron 1 of the human p53 gene

1993 • 47 citations

Non-ocular cancer in hereditary retinoblastoma survivors and relatives

1987 • 29 citations

Loss of heterozygosity on chromosome 13 and its association with delayed growth of retinoblastoma

1993 • 23 citations

Isolation of DNA clones revealing restriction fragment length polymorphisms in the human genome

1986 • 18 citations

A TP53 mutation detected in cells established from an osteosarcoma, but not in the retinoblastoma of a patient with bilateral retinoblastoma and multiple primary osteosarcomas

1992 • 13 citations

Cited By (0)

Loading...
Loss of Heterozygosity in the VNTR Region of Intron 1 of P53 in two Retinoblastoma Cases (1996) – Pediatric Hematology and Oncology | Metascience Observatory Explorer