Inactivation of WT1 in nephrogenic rests, genetic precursors to Wilms' tumour

S Park, A Bernard, KE Bove, DA Sens… - Nature …, 1993 - nature.com
S Park, A Bernard, KE Bove, DA Sens, DJ Hazen-Martin, AJ Garvin, DA Haber
Nature genetics, 1993nature.com
Nephrogenic rests consist of foci of primitive renal cells, typically microscopic, that are found
within the normal kidney tissue of children with Wilms' tumour. To study the relationship
between nephrogenic rests and the associated tumours, we screened these lesions for
mutations in the 11p13 Wilms' tumour suppressor gene, WT1. In two cases in which the
Wilms' tumour contained a somatic WT1 mutation, the nephrogenic rest had the identical
mutation. Nephrogenic rests and Wilms' tumours are therefore topographically distinct …
Abstract
Nephrogenic rests consist of foci of primitive renal cells, typically microscopic, that are found within the normal kidney tissue of children with Wilms' tumour. To study the relationship between nephrogenic rests and the associated tumours, we screened these lesions for mutations in the 11p13 Wilms' tumour suppressor gene, WT1. In two cases in which the Wilms' tumour contained a somatic WT1 mutation, the nephrogenic rest had the identical mutation. Nephrogenic rests and Wilms' tumours are therefore topographically distinct lesions that are clonally derived from an early renal stem cell. Inactivation of WT1 appears to be an early genetic event which can lead to the formation of nephrogenic rests, enhancing the probability that additional genetic hits will lead to Wilms' tumour.
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