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Id1 and Id3 expression is associated with increasing grade of prostate cancer: Id3 preferentially regulates CDKN1B
Pankaj Sharma1, Divya Patel, Jaideep Chaudhary
1Department of Biological Sciences, Centre for Cancer Research and Therapeutics Development, Clark Atlanta University, Atlanta, Georgia, 30314, USA.
Abstract:
As transcriptional regulators of basic helix-oop-helix (bHLH) transcription and non-bHLH factors, the inhibitor of differentiation (Id1, Id2, Id3, and Id4) proteins play a critical role in coordinated regulation of cell growth, differentiation, tumorigenesis, and angiogenesis. Id1 regulates prostate cancer (PCa) cell proliferation, apoptosis, and androgen independence, but its clinical significance in PCa remains controversial. Moreover, there is lack of evidence on the expression of Id2 and Id3 in PCa progression. In this study we investigated the expression of Id2 and Id3 and reevaluated the expression of Id1 in PCa. We show that increased Id1 and Id3 protein expression is strongly associated with increasing grade of PCa. At the molecular level, we report that silencing either Id1 or Id3 attenuates cell cycle. Although structurally and mechanistically similar, our results show that both these proteins are noncompensatory at least in PCa progression. Moreover, through gene silencing approaches we show that Id1 and Id3 primarily attenuates CDKN1A (p21) and CDKN1B (p27), respectively. We also demonstrate that silencing Id3 alone significantly attenuates proliferation of PCa cells as compared with Id1. We propose that increased Id1 and Id3 expression attenuates all three cyclin-dependent kinase inhibitors (CDKN2B, -1A, and -1B) resulting in a more aggressive PCa phenotype.
Insights
Inhibitor of differentiation (Id) proteins Id1 and Id3 are elevated in aggressive prostate cancer (PCa). Silencing these Id proteins impacts cell cycle and proliferation, suggesting they drive PCa progression.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- Inhibitor of differentiation (Id) proteins (Id1-Id4) regulate cell growth, differentiation, and angiogenesis.
- Id1's role in prostate cancer (PCa) is debated, and Id2/Id3 expression in PCa progression is understudied.
Purpose of the Study:
- To investigate the expression of Id2 and Id3 and re-evaluate Id1 expression in PCa.
- To understand the molecular mechanisms by which Id proteins influence PCa progression.
Main Methods:
- Analysis of Id1, Id2, and Id3 protein expression in PCa.
- Gene silencing techniques to assess the functional impact of Id1 and Id3.
- Evaluation of cell cycle regulation and proliferation markers.
Main Results:
- Increased Id1 and Id3 protein levels correlate with higher PCa grade.
- Silencing Id1 or Id3 attenuates the cell cycle; they act non-compensatory in PCa.
- Id1 and Id3 primarily attenuate CDKN1A (p21) and CDKN1B (p27), respectively.
- Silencing Id3 significantly reduces PCa cell proliferation more than silencing Id1.
Conclusions:
- Elevated Id1 and Id3 expression is linked to aggressive PCa phenotypes.
- Id1 and Id3 attenuate cyclin-dependent kinase inhibitors (CDKN2B, -1A, -1B), promoting PCa aggressiveness.
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Cyclin-dependent kinases, or Cdks, work in concert with cyclins to control cell cycle transitions. M-Cdk, a complex of Cdk1 bound to M cyclin, is a well-known example of this coordinated control that drives the transition from the G2 to the M phase.
M cyclin...

