Phosphorylation Regulates Id2 Degradation and Mediates the Proliferation of Neural Precursor Cells

Author:

Sullivan Jaclyn M.12,Havrda Matthew C.13,Kettenbach Arminja N.14,Paolella Brenton R.15,Zhang Zhonghua13,Gerber Scott A.145,Israel Mark A.135

Affiliation:

1. Pharmacology and Toxicology, Norris Cotton Cancer Center, One Medical Center Drive, Lebanon, NH, 03756

2. Department of Pharmacology and Toxicology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA

3. Department of Pediatrics, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA

4. Department of Biochemistry, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA

5. Department of Genetics, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA

Abstract

Abstract Inhibitor of DNA binding proteins (Id1-Id4) function to inhibit differentiation and promote proliferation of many different cell types. Among the Id family members, Id2 has been most extensively studied in the central nervous system (CNS). Id2 contributes to cultured neural precursor cell (NPC) proliferation as well as to the proliferation of CNS tumors such as glioblastoma that are likely to arise from NPC-like cells. We identified three phosphorylation sites near the N-terminus of Id2 in NPCs. To interrogate the importance of Id2 phosphorylation, Id2-/- NPCs were modified to express wild type (WT) Id2 or an Id2 mutant protein that could not be phosphorylated at the identified sites. We observed that NPCs expressing this mutant lacking phosphorylation near the N-terminus had higher steady-state levels of Id2 when compared to NPCs expressing WT Id2. This elevated level was the result of a longer half-life and reduced proteasome-mediated degradation. Moreover, NPCs expressing constitutively de-phosphorylated Id2 proliferated more rapidly than NPCs expressing WT Id2, a finding consistent with the well-characterized function of Id2 in driving proliferation. Observing that phosphorylation of Id2 modulates the degradation of this important cell-cycle regulator, we sought to identify a phosphatase that would stabilize Id2 enhancing its activity in NPCs and extended our analysis to include human glioblastoma-derived stem cells (GSCs). We found that expression of the phosphatase PP2A altered Id2 levels. Our findings suggest that inhibition of PP2A may be a novel strategy to regulate the proliferation of normal NPCs and malignant GSCs by decreasing Id2 levels.

Funder

Jordan and Kyra Memorial Foundation

The Theodora B. Betz Foundation

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

Reference67 articles.

1. The function of E- and Id proteins in lymphocyte development;Engel;Nat Rev Immunol,2001

2. The regulation and function of the Id proteins in lymphocyte development;Rivera;Oncogene,2001

3. Basic helix-loop-helix factors in cortical development;Ross;Neuron,2003

4. Common regulation of growth arrest and differentiation of osteoblasts by helix-loop-helix factors;Funato;Mol Cell Biol,2001

5. Class A helix-loop-helix proteins are positive regulators of several cyclin-dependent kinase inhibitors' promoter activity and negatively affect cell growth;Pagliuca;Cancer Res,2000

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