p31comet Induces cellular senescence through p21 accumulation and Mad2 disruption

  • Miyong Y.; 
  • Han Y.-H.; 
  • Sun H.Y.; 
  • Hee Y.K.; 
  • Kim B.-Y.; 
  • ... Gil H.P.; 
  • 외 9명
Citations

SCOPUS

22

초록

Functional suppression of spindle checkpoint protein activity results in apoptotic cell death arising from mitotic failure, including defective spindle formation, chromosome missegregation, and premature mitotic exit. The recently identified p31comet protein acts as a spindle checkpoint silencer via communication with the transient Mad2 complex. In the present study, we found that p31comet overexpression led to two distinct phenotypic changes, cellular apoptosis and senescence. Because of a paucity of direct molecular link of spindle checkpoint to cellular senescence, however, the present report focuses on the relationship between abnormal spindle checkpoint formation and p31comet-induced senescence by using susceptible tumor cell lines. p31comet-induced senescence was accompanied by mitotic catastrophe with massive nuclear and chromosomal abnormalities. The progression of the senescence was completely inhibited by the depletion of p21 Waf1/Cip1 and partly inhibited by the depletion of the tumor suppressor protein p53. Notably, p21Waf1/Cip1 depletion caused a dramatic phenotypic conversion of p31comet-induced senescence into cell death through mitotic catastrophe, indicating that p21Waf1/Cip1 is a major mediator of p31comet-induced cellular senescence. In contrast to wild-type p31comet, overexpression of a p31 mutant lacking the Mad2 binding region did not cause senescence. Moreover, depletion of Mad2 by small interfering RNA induced senescence. Here, we show that p31comet induces tumor cell senescence by mediating p21Waf1/Cip1 accumulation and Mad2 disruption and that these effects are dependent on a direct interaction of p31comet with Mad2. Our results could be used to control tumor growth. © 2009 American Association for Cancer Research.

키워드

cell protein; cyclin dependent kinase inhibitor 1; mutant protein; protein Mad2; protein p21; protein p31comet; protein p53; small interfering RNA; unclassified drug; beta galactosidase; calcium binding protein; CDKN1A protein, human; cell cycle protein; cyclin dependent kinase inhibitor 1A; DNA; MAD2L1 protein, human; MAD2L1BP protein, human; nuclear protein; protein p53; repressor protein; signal transducing adaptor protein; TP53 protein, human; apoptosis; article; binding site; cancer growth; chromosome aberration; chromosome segregation; controlled study; DNA content; human; human cell; mitosis spindle; phenotype; priority journal; protein expression; protein function; protein protein interaction; senescence; biosynthesis; cell aging; cell clone; cell proliferation; drug antagonism; drug effect; genetics; metabolism; mitosis; physiology; signal transduction; tumor cell line; Adaptor Proteins, Signal Transducing; Apoptosis; beta-Galactosidase; Calcium-Binding Proteins; Cell Aging; Cell Cycle Proteins; Cell Line, Tumor; Cell Proliferation; Clone Cells; Cyclin-Dependent Kinase Inhibitor p21; DNA; Humans; Mitosis; Mitotic Spindle Apparatus; Nuclear Proteins; Repressor Proteins; Signal Transduction; Tumor Suppressor Protein p53
제목
p31comet Induces cellular senescence through p21 accumulation and Mad2 disruption
저자
Miyong Y.; Han Y.-H.; Sun H.Y.; Hee Y.K.; Kim B.-Y.; Ju Y.-J.; Kang C.M.; Su H.J.; Chung H.-Y.; Lee S.-J.; Cho M.-H.; Yoon G.; Gil H.P.; Sang H.K.; Lee K.-H.
DOI
10.1158/1541-7786.MCR-08-0056
발행일
2009
유형
Article
저널명
Molecular Cancer Research
권
7
호
3
페이지
371 ~ 382