p18Ink4cand p53 act as tumor suppressors in Cyclin D1-driven primitive neuroectodermal tumor
The RB tumor suppressor pathway is likely important in primitive neuroectodermal tumors (PNET) of the brain. In fact, 10-15% of children born with RB mutations develop brain PNETs, commonly in the pineal gland. Cyclin D1, which in association with Cyclin-dependent kinases (Cdk) 4 and 6 phosphorylate...
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Veröffentlicht in: | Cancer research (Chicago, Ill.) Ill.), 2009-01, Vol.69 (2), p.440-448 |
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Sprache: | eng |
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Zusammenfassung: | The RB tumor suppressor pathway is likely important in primitive neuroectodermal tumors (PNET) of the brain. In fact, 10-15% of children born with
RB
mutations develop brain PNETs, commonly in the pineal gland. Cyclin D1, which in association with Cyclin-dependent kinases (Cdk) 4 and 6 phosphorylates and inactivates the RB protein, is expressed in 40% of sporadic medulloblastoma, a PNET of the cerebellum. To understand tumorigenic events cooperating with
RB
pathway disruption in brain PNET, we generated a transgenic mouse where
Cyclin D1
was expressed in pineal cells. Cyclin D1 enhanced pinealocyte proliferation, causing pineal gland enlargement. However, proliferation ceased beyond 2 weeks of age with reversal of Cdk4-mediated Rb phosphorylation despite continued expression of the transgene, and the pineal cells showed heterochromatin foci suggestive of a senescent-like state. In the absence of the
p53
tumor suppressor, cell proliferation continued, resulting in pineal PNET that limited mouse survival to ~ 4 months. Interestingly, the Cdk-inhibitor p18
Ink4c
was induced in the transgenic pineal glands independently of p53, and transgenic mice that lacked
Ink4c
developed invasive PNET, though at an older age than those lacking
p53
. Analogous to our mouse model, we found that children with heritable retinoblastoma often had asymptomatic pineal gland enlargement that only rarely progressed to PNET. Our finding that the Cdk4-inhibitor p18
Ink4c
is a tumor suppressor in Cyclin D1-driven PNET suggests that pharmacological interventions to inhibit Cdk4 activity may be a useful chemoprevention or therapeutic strategy in cancer driven by primary Rb pathway disruption. |
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ISSN: | 0008-5472 1538-7445 |
DOI: | 10.1158/0008-5472.CAN-08-1892 |