Liu J, Weiss A, Durrant D, Chi N-W, Lee R M
Huntsman Cancer Institute, Department of Internal Medicine, University of Utah, Salt Lake City, UT 84112, USA.
Apoptosis. 2004 Sep;9(5):533-41. doi: 10.1023/B:APPT.0000038034.16230.ea.
Bid is cleaved by caspase 8 during apoptosis and the truncated Bid (tBid) translocates to mitochondria by targeting cardiolipin. Amino acids 103-162 of Bid were reported as the cardiolipin-binding domain (CBD). The EGFP-CBD fusion protein targets to mitochondria and induces apoptosis. Using [(3)H]cardiolipin, we proved that recombinant CBD binds cardiolipin similar to tBid and tBid(G94E), a mutant with a defective BH3 domain. CBD could induce cytochrome c release from isolated mitochondria, but much less potent than tBid. Free cardiolipin inhibited the CBD-induced cytochrome c release, suggesting that it may be mediated by interfering with mitochondrial cardiolipin, especially with the interaction between cytochrome c and cardiolipin. This is consistent with the findings that CBD induced cytochrome c release in Bax-deficient cells, and that CBD suppressed mitochondrial respiration through directly interfering with cardiolipin, a critical lipid involved in oxidative phosphorylation. These results indicate the functional importance of CBD in tBid-induced apoptosis.
在细胞凋亡过程中,Bid被半胱天冬酶8切割,截短的Bid(tBid)通过靶向心磷脂转运至线粒体。Bid的103 - 162位氨基酸被报道为心磷脂结合结构域(CBD)。EGFP - CBD融合蛋白靶向线粒体并诱导细胞凋亡。使用[³H]心磷脂,我们证明重组CBD与tBid以及tBid(G94E,一种BH3结构域有缺陷的突变体)类似,能结合心磷脂。CBD可诱导细胞色素c从分离的线粒体中释放,但效力远低于tBid。游离的心磷脂抑制CBD诱导的细胞色素c释放,这表明其可能是通过干扰线粒体心磷脂,特别是通过干扰细胞色素c与心磷脂之间的相互作用来介导的。这与以下发现一致:CBD在Bax缺陷细胞中诱导细胞色素c释放,且CBD通过直接干扰心磷脂(一种参与氧化磷酸化的关键脂质)来抑制线粒体呼吸。这些结果表明CBD在tBid诱导的细胞凋亡中具有重要功能。