Cytochrome C Release and Caspase Activation Induced by 3-Deazaadenosisne is Inhibited by Bcl-2

  • Lee Yong-Joon (Department of Biochemistry, College of Medicine, The Catholic University of Korea) ;
  • Choi Mi-Hyun (Department of Biochemistry, College of Medicine, The Catholic University of Korea) ;
  • Lee Jung-Hee (Department of Biochemistry, College of Medicine, The Catholic University of Korea) ;
  • Kim Ho-Shik (Department of Biochemistry, College of Medicine, The Catholic University of Korea) ;
  • Lee Jeong-Hwa (Department of Biochemistry, College of Medicine, The Catholic University of Korea)
  • 발행 : 2006.06.01

초록

Deazaadenosine analogs such as 3-deazaadenosine (DZA), 3-deazaaristeromycin (DZAri) and ara-3-deazaadenine (DZAra-A) were developed as inhibitors of S-adenosylhomocysteine (Ado-Hcy) hydrolase (EC 3.3.1.1). These analogs were reported to induce apoptosis in human and murine leukemic cells. But, the mechanism involved in this apoptosis was not clarified yet. In the present study, we analyze the apoptosis induced by deazaadenosine analogs in human cervival cancer cell line, HeLa and the effect of Bcl-2 on this apoptosis. Whereas neither DZAri nor DZAra-A showed inhibitory effect on HeLa cell growth, DZA induced apoptosis in HeLa cells accompanied by cytochrome c release and activation of various caspases such as caspase-2,-8,-9 and -3. In HeLa-bcl-2 cell line, a stable transfectant of HeLa cell to overexpress Bcl-2, cytochrome c release, activation of all these caspases and the resulted apoptosis by DZA were completely prevented. By in vitro assay of cytochrome c release, in addition, DZA induced cytochrome c release from purified mitochondria of HeLa-pcDNA3 cells, but not HeLa-bcl-2 cells, even in the absence of cytosolic fraction. Therefore, it can be suggested that DZA might damage directly mitochondria leading to activate intrinsic pathway of caspase and thus induce apoptosis. DZA-induced apoptosis in HeLa cells may be in a bcl-2-inhibitable manner and irrelative of Ado-Hcy hydrolase.

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