Center for Pharmacogenomics, Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Biol Chem. 2013 May 31;288(22):15455-65. doi: 10.1074/jbc.M113.452342. Epub 2013 Apr 19.
Several Bcl2 family proteins are expressed both as mitochondrial-targeted full-length and as cytosolic truncated alternately spliced isoforms. Recombinantly expressed shorter Bcl2 family isoforms can heterotypically bind to and prevent mitochondrial localization of their full-length analogs, thus suppressing their activity by sequestration. This "sponge" role requires 1:1 expression stoichiometry; absent this an alternate role is suggested. Here, RNA sequencing revealed coordinate regulation of BH3-only protein Nix/Bnip3L (Nix) and its alternately spliced soluble form (sNix) in hearts, but relative sNix/Nix expression of ∼1:10. Accordingly, we examined other putative functions of sNix. Although Nix expressed in H9c2 rat myoblasts localized to mitochondria, sNix showed variable cytoplasmic and nuclear distribution. Tumor necrosis factor α (TNFα) induced rapid and complete sNix nucleoplasmic translocation concomitant with nuclear translocation of the p65/RelA subunit of NFκB. sNix co-localized and co-precipitated with p65/RelA after TNFα stimulation; TNFα-induced sNix nuclear translocation did not occur in p65/RelA null murine embryonic fibroblasts. ChIP sequencing of TNFα-stimulated H9c2 cells revealed sNix suppression of p65/RelA binding to a subset of weaker DNA binding sites, accounting for its ability to alter gene expression in cultured cells and in vivo mouse hearts. These findings reveal TNFα-stimulated cytoplasmic-nuclear shuttling of the alternately spliced non-mitochondrial Nix isoform and uncover a role for sNix as a modulator of TNFα/NFκB-stimulated cardiac gene expression. Transcriptional co-regulation of sNix and Nix, combined with sNix posttranslational regulation by TNFα, comprises a previously unknown mechanism for molecular cross-talk between extrinsic death receptor and intrinsic mitochondrial apoptosis pathways.
几种 Bcl2 家族蛋白既表达为靶向线粒体的全长形式,也表达为细胞质截断的交替剪接异构体。重组表达的较短 Bcl2 家族异构体可以异源结合并阻止其全长类似物的线粒体定位,从而通过隔离来抑制其活性。这种“海绵”作用需要 1:1 的表达化学计量比;否则,就会出现另一种作用。在这里,RNA 测序揭示了 BH3 仅有蛋白 Nix/Bnip3L(Nix)及其交替剪接的可溶性形式(sNix)在心脏中的协调调节,但相对的 sNix/Nix 表达约为 1:10。因此,我们研究了 sNix 的其他潜在功能。尽管在 H9c2 大鼠成肌细胞中表达的 Nix 定位于线粒体,但 sNix 显示出可变的细胞质和核分布。肿瘤坏死因子 α(TNFα)诱导 sNix 快速且完全核质易位,同时 NFκB 的 p65/RelA 亚基核易位。TNFα 刺激后 sNix 与 p65/RelA 共定位和共沉淀;在 p65/RelA 缺失的小鼠胚胎成纤维细胞中,不会发生 TNFα 诱导的 sNix 核易位。TNFα 刺激的 H9c2 细胞的 ChIP 测序显示,sNix 抑制了 p65/RelA 与一组较弱的 DNA 结合位点的结合,这解释了其在培养细胞和体内小鼠心脏中改变基因表达的能力。这些发现揭示了 TNFα 刺激的交替剪接的非线粒体 Nix 异构体的细胞质-核穿梭,并揭示了 sNix 作为 TNFα/NFκB 刺激的心脏基因表达调节剂的作用。sNix 和 Nix 的转录共调节,加上 TNFα 对 sNix 的翻译后调节,构成了外在死亡受体和内在线粒体凋亡途径之间分子串扰的先前未知机制。