Semenov D V, Aronov P A, Kuligina E V, Potapenko M O, Richter V A
Novosibirsk Institute of Bioorganic Chemistry, Siberian Division of the Russian Academy of Sciences, Novosibirsk 630090, Russia.
Biochemistry (Mosc). 2003 Dec;68(12):1335-41. doi: 10.1023/b:biry.0000011655.58235.44.
Oligonucleosomal fragmentation of nuclear DNA is the late-stage apoptosis hallmark. In apoptotic mammalian cells the fragmentation is catalyzed by DFF40/CAD DNase primarily activated by caspase 3 through the site-specific proteolytic cleavage of DFF45/ICAD. A deletion in the casp3 gene of human breast adenocarcinoma MCF-7 results in lack of procaspase 3 in these cells. The absence of caspase 3 in MCF-7 leads to disability to activate oligonucleosomal DNA fragmentation in TNF-alpha induced cell death. In this study, sodium palmitate was used as an apoptotic stimulus for MCF-7. It has been shown that palmitate but not TNF-alpha induces both apoptotic changes in nuclei and oligonucleosomal DNA fragmentation in casp3-mutated MCF-7. Activation and accumulation of 40-50 kD DFF40-like DNases in nuclei of palmitate-treated apoptotic MCF-7 were detected by SDS-DNA-PAGE assay. Microsomal fraction of apoptotic MCF-7 does not contain any detectable DNases, but activates 40-50 kD nucleases when incubated with human placental chromatin. Furthermore, microsomes of apoptotic MCF-7 induce oligonucleosomal fragmentation of chromatin in a cell-free system. Both the activation of DNases and chromatin fragmentation are suppressed in the presence of the caspase 3/7 inhibitor Ac-DEVD-CHO. Microsome-associated caspase 7 is suggested to play an essential role in the induction of oligonucleosomal DNA fragmentation in casp3-deficient MCF-7 cells.
核DNA的寡核小体片段化是晚期凋亡的标志。在凋亡的哺乳动物细胞中,这种片段化由DFF40/CAD核酸酶催化,该酶主要通过半胱天冬酶3对DFF45/ICAD进行位点特异性蛋白水解切割而被激活。人乳腺腺癌MCF-7的casp3基因缺失导致这些细胞中缺乏前半胱天冬酶3。MCF-7中缺乏半胱天冬酶3导致在TNF-α诱导的细胞死亡中无法激活寡核小体DNA片段化。在本研究中,棕榈酸钠被用作MCF-7的凋亡刺激物。已表明,棕榈酸而非TNF-α可在casp3突变的MCF-7中诱导细胞核凋亡变化和寡核小体DNA片段化。通过SDS-DNA-PAGE分析检测到棕榈酸处理的凋亡MCF-7细胞核中40-50 kD的DFF40样核酸酶的激活和积累。凋亡MCF-7的微粒体部分不含任何可检测到的核酸酶,但与人胎盘染色质一起孵育时可激活40-50 kD核酸酶。此外,凋亡MCF-7的微粒体在无细胞系统中诱导染色质的寡核小体片段化。在存在半胱天冬酶3/7抑制剂Ac-DEVD-CHO的情况下,核酸酶的激活和染色质片段化均受到抑制。有人提出,微粒体相关的半胱天冬酶7在casp3缺陷的MCF-7细胞中寡核小体DNA片段化的诱导中起重要作用。