PTTG's C-terminal PXXP motifs modulate critical cellular processes in vitro

被引:33
作者
Boelaert, K [1 ]
Yu, R
Tannahill, LA
Stratford, AL
Khanim, FL
Eggo, MC
Moore, JS
Young, LS
Gittoes, NJL
Franklyn, JA
Melmed, S
McCabe, CJ
机构
[1] Univ Birmingham, Queen Elizabeth Hosp, Div Med Sci, Birmingham B15 2TH, W Midlands, England
[2] Univ Calif Los Angeles, Sch Med, Cedars Sinai Res Inst, Los Angeles, CA 90048 USA
[3] Univ Birmingham, Queen Elizabeth Hosp, Inst Canc Studies, Birmingham B15 2TH, W Midlands, England
关键词
D O I
10.1677/jme.1.01606
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Human pituitary tumor-transforming gene (PTTG), known also as securin, is a multifunctional protein implicated in the control of mitosis and the pathogenesis of thyroid, colon, oesophageal and other tumour types. Critical to PTTG function is a C-terminal double PXXP motif, forming a putative SH3-interacting domain and housing the gene's sole reported phosphorylation site. The exact role of phosphorylation and PXXP structure in the modulation of PTTG action in vitro remains poorly understood. We therefore examined the mitotic, transformation, proliferation and transactivation function of the C-terminal PXXP motifs of human PTTG. Live-cell imaging studies using an EGFP-PTTG construct indicated that PTTG's regulation of mitosis is retained regardless of phosphorylation status. Colony-formation assays demonstrated that phosphorylation of PTTG may act as a potent inhibitor of cell transformation. In proliferation assays, NIH-3T3 cells stable transfected and overexpressing mutations preventing PTTG phosphorylation (Phos-) showed significantly increased [H-3]thymidine incorporation compared with WT, whereas mutants mimicking constitutive phosphorylation of PTTG (Phos+) exhibited reduced cell proliferation. We demonstrated that PTTG transactivation of FGF-2 in primary thyroid and PTTG-null cell lines was not affected by PTTG phosphorylation but was prevented by a mutant disrupting the PXXP motifs (SH3-). Taken together, our data suggest that PXXP structure and phosphorylation are likely to exert independent and critical influences upon PTTG's diverse actions in vitro.
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页码:663 / 677
页数:15
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