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The Bad Guy Cooperates with Good Cop p53: Bad Is Transcriptionally Up-Regulated by p53 and Forms a Bad/p53 Complex at the Mitochondria To Induce Apoptosis▿

机译:坏家伙与好警察p53合作:坏分子在转录上被p53上调并在线粒体形成Bad / p53复合物以诱导细胞凋亡▿

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摘要

Although the regulation of several Bcl-2 family molecules, including Puma, Noxa, Bax, and Bid, by p53 has been studied intensively, the interplay between Bad (Bcl-2 antagonist of cell death) and p53 has not yet been reported thus far. Here, we report that p53 activates Bad transcription and expression through binding to a short conserved sequence located approximately 6.6 kb upstream of the translation start point. We also demonstrate that Bad physically interacts with cytoplasmic p53, thereby preventing p53 from entering the nucleus and resulting in reduced transcription of Bad. Moreover, Bad is able to direct p53 to the mitochondria and forms a p53/Bad complex at the mitochondria. Two lines of evidences support this hypothesis: first, when mitochondria purified from p53-deficient H1299 cells are incubated with p53 and either wild-type (wt) Bad or mutant Bad (this mutant binds p53 yet is unable to migrate to mitochondria), p53 can be detected only in mitochondria incubated with wt Bad and not in those incubated with mutant Bad; second, knockdown of Bad expression reduces mitochondrial localization of p53. The mitochondrial p53/Bad complex promotes apoptosis via activation and oligomerization of Bak. Elimination of Bad expression by RNA interference notably attenuates apoptosis induced by etoposide. Hence, our collective data provide the first evidence that Bad plays dual roles in both p53 transcription-dependent and -independent pathways.
机译:尽管已经深入研究了p53对几种Bcl-2家族分子(包括Puma,Noxa,Bax和Bid)的调节作用,但迄今为止尚未报道Bad(细胞死亡的Bcl-2拮抗剂)与p53之间的相互作用。 。在这里,我们报告说p53通过与位于翻译起始点上游约6.6 kb的短保守序列结合来激活Bad转录和表达。我们还证明Bad会与细胞质p53发生物理相互作用,从而阻止p53进入细胞核并导致Bad转录降低。此外,Bad能够将p53导向线粒体并在线粒体上形成p53 / Bad复合体。有两行证据支持这一假设:首先,将从p53缺陷的H1299细胞中纯化的线粒体与p53和野生型(wt)Bad或突变体Bad(该突变体结合p53但不能迁移到线粒体)一起孵育时,p53只能在与wt Bad孵育的线粒体中检测到,而在与Bad突变体孵育的线粒体中不能检测到;第二,Bad表达的降低可降低p53的线粒体定位。线粒体p53 / Bad复合物通过Bak的激活和寡聚来促进细胞凋亡。 RNA干扰消除Bad表达可显着减弱依托泊苷诱导的细胞凋亡。因此,我们的集体数据提供了第一个证据,证明Bad在p53转录依赖性和非依赖性途径中均发挥双重作用。

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