Wilms' tumor (WT) is an embryonic renal neoplasm which affects 1 in 10,000 children. It has long been considered an excellent model for studying the relationship of cancer to development. A tumor suppressor gene wt1, implicated in predisposition to WT...
Wilms' tumor (WT) is an embryonic renal neoplasm which affects 1 in 10,000 children. It has long been considered an excellent model for studying the relationship of cancer to development. A tumor suppressor gene wt1, implicated in predisposition to WT, is known to play an essential role in regulating development of the kidney and of the genitourinary system. A number of genes involved in growth regulation and cellular differentiation are modulated by WT1 and a number of proteins are known to associate with WT1. Some of these proteins are able to alter the transcriptional properties of WT1 influencing whether WT1 acts as a repressor or activator.
We demonstrate that WT1 represses different classes of activation domains previously shown to stimulate the initiation and elongation steps of transcription in vivo. We also showed that WT1 can repress transcription over a significant distance. Nuclear run-on assays revealed that the mechanism of repression by WT1 occurs at the level of transcription initiation.
We identified a novel WT1-interacting protein named Bone Marrow Zinc Finger 2 (BMZF2). The BMZF2 gene encodes a potential transcription factor harboring 18 zinc fingers and mainly expressed in fetal tissues. In vivo and in vitro pull-down experiments showed that WT1 and BMZF2 associate. This interaction inhibits WT1-mediated transcriptional activation. Additionally, BMZF2 harbors a transcriptional repression domain. These results suggest that BMZF2 interferes with the transactivation properties of WT1.
We performed an expression array screen utilizing WT1 inducible cell lines and found the human vitamin D receptor (VDR) as a major target. Nuclear run-on experiments, transient transfection assays, deletion mutagenesis, electrophoretic mobility shift assays, and chromatin immunoprecipitation assays suggested that the WT1(-KTS) isoforms bind directly to the VDR promoter and activate VDR gene expression. Our results suggest that the human VDR gene represents a downstream target of WT1. We discuss the potential regulation of VDR by WT1 in normal and malignant tissues.