Hockings C, Anwari K, Ninnis R L, Brouwer J, O'Hely M, Evangelista M, Hinds M G, Czabotar P E, Lee E F, Fairlie W D, Dewson G, Kluck R M
1] The Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3052, Australia [2] Department of Medical Biology, The University of Melbourne, Parkville, Victoria 3010, Australia.
School of Chemistry and Bio21 Molecular Science and Biotechnology Institute, University of Melbourne, Parkville, Victoria 3010, Australia.
Cell Death Dis. 2015 Apr 23;6(4):e1735. doi: 10.1038/cddis.2015.105.
The mitochondrial pathway of apoptosis is initiated by Bcl-2 homology region 3 (BH3)-only members of the Bcl-2 protein family. On upregulation or activation, certain BH3-only proteins can directly bind and activate Bak and Bax to induce conformation change, oligomerization and pore formation in mitochondria. BH3-only proteins, with the exception of Bid, are intrinsically disordered and therefore, functional studies often utilize peptides based on just their BH3 domains. However, these reagents do not possess the hydrophobic membrane targeting domains found on the native BH3-only molecule. To generate each BH3-only protein as a recombinant protein that could efficiently target mitochondria, we developed recombinant Bid chimeras in which the BH3 domain was replaced with that of other BH3-only proteins (Bim, Puma, Noxa, Bad, Bmf, Bik and Hrk). The chimeras were stable following purification, and each immunoprecipitated with full-length Bcl-xL according to the specificity reported for the related BH3 peptide. When tested for activation of Bak and Bax in mitochondrial permeabilization assays, Bid chimeras were ~1000-fold more effective than the related BH3 peptides. BH3 sequences from Bid and Bim were the strongest activators, followed by Puma, Hrk, Bmf and Bik, while Bad and Noxa were not activators. Notably, chimeras and peptides showed no apparent preference for activating Bak or Bax. In addition, within the BH3 domain, the h0 position recently found to be important for Bax activation, was important also for Bak activation. Together, our data with full-length proteins indicate that most BH3-only proteins can directly activate both Bak and Bax.
细胞凋亡的线粒体途径由Bcl-2蛋白家族中仅含Bcl-2同源结构域3(BH3)的成员启动。在某些BH3-only蛋白上调或激活后,它们能直接结合并激活Bak和Bax,从而诱导线粒体发生构象改变、寡聚化和孔道形成。除了Bid之外,BH3-only蛋白本质上是无序的,因此,功能研究通常仅利用基于其BH3结构域的肽段。然而,这些试剂并不具备天然BH3-only分子上的疏水膜靶向结构域。为了产生能够有效靶向线粒体的重组形式的各BH3-only蛋白,我们构建了重组Bid嵌合体,其中Bid的BH3结构域被其他BH3-only蛋白(Bim、Puma、Noxa、Bad、Bmf、Bik和Hrk)的BH3结构域所取代。纯化后的嵌合体很稳定,并且根据相关BH3肽段报道的特异性,每种嵌合体都能与全长Bcl-xL进行免疫沉淀。在线粒体通透性检测中测试Bak和Bax的激活情况时,Bid嵌合体的效果比相关BH3肽段强约1000倍。Bid和Bim的BH3序列是最强的激活剂,其次是Puma、Hrk、Bmf和Bik,而Bad和Noxa则不是激活剂。值得注意的是,嵌合体和肽段在激活Bak或Bax方面没有明显偏好。此外,在BH3结构域内,最近发现对Bax激活很重要的h0位置,对Bak激活也很重要。总之,我们对全长蛋白的研究数据表明,大多数BH3-only蛋白都能直接激活Bak和Bax。