| Literature DB >> 19604401 |
Longzhen Piao1, Yuwen Li, Keum-Jin Yang, Kyeong Ah Park, Hee Sun Byun, Minho Won, Janghee Hong, Jeong-Lan Kim, Gi Ryang Kweon, Gang Min Hur, Jeong Ho Seok, Jae Youl Cho, Taehoon Chun, Daniel Hess, Ragna Sack, Sauveur-Michel Maira, Derek P Brazil, Brian A Hemmings, Jongsun Park.
Abstract
BACKGROUND: The serine/threonine protein kinase B (PKB/Akt) is involved in insulin signaling, cellular survival, and transformation. Carboxyl-terminal modulator protein (CTMP) has been identified as a novel PKB binding partner in a yeast two-hybrid screen, and appears to be a negative PKB regulator with tumor suppressor-like properties. In the present study we investigate novel mechanisms by which CTMP plays a role in apoptosis process.Entities:
Mesh:
Substances:
Year: 2009 PMID: 19604401 PMCID: PMC2729731 DOI: 10.1186/1471-2121-10-53
Source DB: PubMed Journal: BMC Cell Biol ISSN: 1471-2121 Impact factor: 4.241
Figure 1Serine 37 or Serine 38 of CTMP is phosphorylated . CCL64 cells expressing Flag-CTMP were metabolically labeled with 32Pi prior to pervanadate treatment. (A) Immunoprecipitated 32P-labeled CTMP and (B) Extracted protein from both conditions was hydrolyzed and analyzed as described in Experimental Procedures. (Phosphoserine: pS, phosphothreonine: pT, and phosphotyrosine: pY) (C) Full scan mass spectrum of fraction 16 in the positive mode was acquired. (D) m/z values of the phosphopeptides were identified by m/z 79 precursor-ion scanning in the negative ion mode. (E and F). Tandem mass spectra derived by CID of the (M + 2H) 2+ precursor, m/z 609.3. Fragment ions in the spectra represent many single-event preferential cleavages of peptide bonds, resulting in the sequence information recorded from both the N- and C-termini of the peptide simultaneously. The single-letter code for the amino acids is shown.
Figure 2Functional mitochondrial localization of CTMP. U2OS cells were transfected with (A) CTMP GFP-tagged at the N-terminus (GFP-NT-CTMP) or (B) CTMP GFP-tagged at the C-terminus (GFP-CT-CTMP) for 24 h. Differential localization of CTMP (Cyt: cytoplasm, PM: plasma membrane, Mit: mitochondria, Nuc: Nucleus) was examined using confocal microscopy. At least 200 cells were counted from three distinct fields for each transfected group. U2OS cells were co-transfected with (C) pEGFP-N3-CTMP and pDsRed-mito for 24 h and analyzed by confocal microscopy. (D) U2OS cells were transfected with pEGFP-N3-CTMP. Total lysates (Tot), cytosolic fractions (Cyt), and mitochondrial fractions (Mit) were analyzed by immunoblot analysis. (E) The subcellular fractions of HEK 293 cells were analyzed with the indicated antibodies. (COX IV, Mit marker; α-tubulin, Cyt marker). (F) Mitochondrial fractions of HEK 293 cells were isolated and treated under the indicated conditions. Samples were separated into the supernatant (S) and precipitate (P) fractions and then analyzed. (AIF, Mit intermembrane space marker).
Figure 3MTS- and phosphorylation-dependent mitochondria localization of CTMP in U2OS cells. U2OS cells were transfected with (A) An N-terminal deletion mutant of CTMP (GFP-CT-CTMP ΔN31) or (C) The S37D/S38D negatively charged side group-mimic mutant form of CTMP (GFP-CT-CTMP-S37D/S38D) for 24 h. Differential localization of CTMP (Cyt: cytoplasm, PM: plasma membrane, Mit: mitochondria, Nuc: Nucleus) was examined using confocal microscopy. At least 200 cells were counted from three distinct fields for each transfected group. U2OS cells were co-transfected with (B) pEGFP-N3-Δ31-CTMP and pDsRed-mito for 24 h and analyzed. (D) HeLa cells were transduced with the indicated virus for 24 h, treated with 1 uM staurosporine for 3 and 6 h, harvested, and analyzed. Results are representative of three independent experiments. (E, F) Bands of cleaved PARP and caspase 9 were further analyzed by densitometry. Statistical differences of cleaved protein were determined by comparing values for actin at each lane. The results are mean ± SD of three independent experiments. Asterisk, p < 0.05; double asterisk, p < 0.01.
Figure 4Binding of CTMP to Hsp70 inhibits the formation of a complex containing Hsp70 and Apaf-1 in HeLa cells. (A) HeLa cells were transiently transfected with HA-CTMP and cultured for 24 h. Bound proteins in HA-CTMP immunoprecipitates were detected using anti-Hsp70 and anti-Hsp90 antibodies (top two panels). (B) HeLa cell extracts were incubated with anti-CTMP antibody and bound Hsp70 was assessed by immunoblotting (top panel). (C) HeLa cells were infected with GFP- and CTMP-adenovirus for 24 h. After immunoprecipitation of Apaf-1, bound Hsp70 was detected (top panel). Input of each protein was also detected (bottom). Similar results were obtained in three separate experiments. (D) In addition to CTMP's role in PKB inhibition, CTMP has a key role in mitochondria-mediated apoptosis by localizing to mitochondria. CTMP appeared to be phosphorylated on Ser37/Ser38 in response to pervanadate stimulation, resulting in the cytosolic localization of CTMP. In this context, CTMP sensitizes the cell to apoptosis by binding to Hsp70, thus preventing its binding to Apaf-1. Therefore, CTMP may have distinct roles in various subcellular compartments.