Telomere dysfunction and cell survival: roles for distinct TIN2-containing complexes
Open Access
- 28 April 2008
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 181 (3), 447-460
- https://doi.org/10.1083/jcb.200710028
Abstract
Telomeres are maintained by three DNA-binding proteins (telomeric repeat binding factor 1 [TRF1], TRF2, and protector of telomeres 1 [POT1]) and several associated factors. One factor, TRF1-interacting protein 2 (TIN2), binds TRF1 and TRF2 directly and POT1 indirectly. Along with two other proteins, TPP1 and hRap1, these form a soluble complex that may be the core telomere maintenance complex. It is not clear whether subcomplexes also exist in vivo. We provide evidence for two TIN2 subcomplexes with distinct functions in human cells. We isolated these two TIN2 subcomplexes from nuclear lysates of unperturbed cells and cells expressing TIN2 mutants TIN2-13 and TIN2-15C, which cannot bind TRF2 or TRF1, respectively. In cells with wild-type p53 function, TIN2-15C was more potent than TIN2-13 in causing telomere uncapping and eventual growth arrest. In cells lacking p53 function, TIN2-15C was more potent than TIN2-13 in causing telomere dysfunction and cell death. Our findings suggest that distinct TIN2 complexes exist and that TIN2-15C–sensitive subcomplexes are particularly important for cell survival in the absence of functional p53.Keywords
This publication has 53 references indexed in Scilit:
- A critical role for TPP1 and TIN2 interaction in high-order telomeric complex assemblyProceedings of the National Academy of Sciences, 2006
- Recent Expansion of the Telomeric Complex in Rodents: Two Distinct POT1 Proteins Protect Mouse TelomeresCell, 2006
- Caspase‐independent cytochrome c release is a sensitive measure of low‐level apoptosis in cell culture modelsAging Cell, 2005
- Inhibition of p53 by Lentiviral Mediated sh RNA Abrogates G1 Arrest and Apoptosis in Retinal Pigmented Epithelial Cell LineCell Cycle, 2005
- Importance of TRF1 for Functional Telomere StructurePublished by Elsevier ,2004
- Limited capacity of the nuclear matrix to bind telomere repeat binding factor TRF1 may restrict the proliferation of mortal human fibroblastsHuman Molecular Genetics, 2003
- A DNA damage checkpoint response in telomere-initiated senescenceNature, 2003
- Bloom syndrome cells undergo p53-dependent apoptosis and delayed assembly of BRCA1 and NBS1 repair complexes at stalled replication forksThe Journal of cell biology, 2003
- DNA Damage Foci at Dysfunctional TelomeresCurrent Biology, 2003
- Expression of mutant telomerase in immortal telomerase-negative human cells results in cell cycle deregulation, nuclear and chromosomal abnormalities and rapid loss of viabilityOncogene, 2001