Putcha Girish V, Harris Charles A, Moulder Krista L, Easton Rachael M, Thompson Craig B, Johnson Eugene M
Department of Neurology, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Cell Biol. 2002 Apr 29;157(3):441-53. doi: 10.1083/jcb.200110108.
Trophic factor deprivation (TFD)-induced apoptosis in sympathetic neurons requires macromolecular synthesis-dependent BAX translocation, cytochrome c (cyt c) release, and caspase activation. Here, we report the contributions of other intrinsic and extrinsic pathway signals to these processes. Sympathetic neurons expressed all antiapoptotic BCL-2 proteins examined, yet expressed only certain BH3-only and multidomain proapoptotic BCL-2 family members. All coexpressed proapoptotic proteins did not, however, exhibit functional redundancy or compensatory expression, at least in the Bax-/-, Bak-/-, Bim-/-, Bid-/-, and Bad-/- neurons examined. Although the subcellular distribution or posttranslational modification of certain BCL-2 proteins changed with TFD, neither transcriptional nor posttranslational mechanisms regulated the expression or subcellular localization of BID, BAD, or BAK in this paradigm. Despite modest induction of Fas and FasL expression, Fas-mediated signaling did not contribute to TFD-induced apoptosis in sympathetic neurons. Similar findings were obtained with K+ withdrawal-induced apoptosis in cerebellar granule neurons, a model for activity-dependent neuronal survival in the CNS. Thus, expression alone does not guarantee functional redundancy (or compensation) among BCL-2 family members, and, at least in some cells, extrinsic pathway signaling and certain BH3-only proteins (i.e., BID and BAD) do not contribute to BAX-dependent cyt c release or apoptosis caused by TFD.
神经营养因子剥夺(TFD)诱导的交感神经元凋亡需要大分子合成依赖性的BAX易位、细胞色素c(cyt c)释放和半胱天冬酶激活。在此,我们报告其他内在和外在途径信号对这些过程的作用。交感神经元表达了所有检测的抗凋亡BCL-2蛋白,但仅表达了某些仅含BH3结构域和多结构域的促凋亡BCL-2家族成员。然而,至少在所检测的Bax-/-、Bak-/-、Bim-/-、Bid-/-和Bad-/-神经元中,所有共表达的促凋亡蛋白均未表现出功能冗余或补偿性表达。尽管某些BCL-2蛋白的亚细胞分布或翻译后修饰随TFD而改变,但在该模式下,转录和翻译后机制均未调节BID、BAD或BAK的表达或亚细胞定位。尽管Fas和FasL表达有适度诱导,但Fas介导的信号传导对TFD诱导的交感神经元凋亡并无作用。在小脑颗粒神经元钾离子剥夺诱导的凋亡(一种中枢神经系统中活性依赖性神经元存活的模型)中也获得了类似的结果。因此,仅表达并不能保证BCL-2家族成员之间存在功能冗余(或补偿),并且至少在某些细胞中,外在途径信号传导和某些仅含BH3结构域的蛋白(即BID和BAD)对TFD引起的依赖BAX的cyt c释放或凋亡并无作用。