Laitusis A L, Brostrom M A, Brostrom C O
Department of Pharmacology, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.
J Biol Chem. 1999 Jan 1;274(1):486-93. doi: 10.1074/jbc.274.1.486.
The role of GRP78/BiP in coordinating endoplasmic reticular (ER) protein processing with mRNA translation was examined in GH3 pituitary cells. ADP-ribosylation of GRP78 and eukaryotic initiation factor (eIF)-2alpha phosphorylation were assessed, respectively, as indices of chaperone inactivation and the inhibition of translational initiation. Inhibition of protein processing by ER stress (ionomycin and dithiothreitol) resulted in GRP78 deribosylation and eIF-2 phosphorylation. Suppression of translation relative to ER protein processing (cycloheximide) produced approximately 50% ADP-ribosylation of GRP78 within 90 min without eIF-2 phosphorylation. ADP-ribosylation was reversed in 90 min by cycloheximide removal in a manner accelerated by ER stressors. Cycloheximide sharply reduced eIF-2 phosphorylation in response to ER stressors for about 30 min; sensitivity returned as GRP78 became increasingly ADP-ribosylated. Reduced sensitivity of eIF-2 to phosphorylation appeared to derive from the accumulation of free, unmodified chaperone as proteins completed processing without replacements. Prolonged (24 h) incubations with cycloheximide resulted in the selective loss of the ADP-ribosylated form of GRP78 and increased sensitivity of eIF-2 phosphorylation in response to ER stressors. Brefeldin A decreased ADP-ribosylation of GRP78 in parallel with increased eIF-2 phosphorylation. The cytoplasmic stressor, arsenite, which inhibits translational initiation through eIF-2 phosphorylation without affecting the ER, also produced ADP-ribosylation of GRP78.
在GH3垂体细胞中研究了GRP78/BiP在协调内质网(ER)蛋白加工与mRNA翻译中的作用。分别评估了GRP78的ADP核糖基化和真核起始因子(eIF)-2α磷酸化,作为伴侣蛋白失活和翻译起始抑制的指标。内质网应激(离子霉素和二硫苏糖醇)对蛋白加工的抑制导致GRP78去核糖基化和eIF-2磷酸化。相对于内质网蛋白加工(放线菌酮)对翻译的抑制在90分钟内使GRP78产生了约50%的ADP核糖基化,而没有eIF-2磷酸化。通过去除放线菌酮,在90分钟内ADP核糖基化以内质网应激源加速的方式逆转。放线菌酮在约30分钟内显著降低了内质网应激源引起的eIF-2磷酸化;随着GRP78越来越多地被ADP核糖基化,敏感性恢复。eIF-2对磷酸化的敏感性降低似乎源于游离的、未修饰的伴侣蛋白的积累,因为蛋白质在没有替换的情况下完成了加工。用放线菌酮长时间(24小时)孵育导致GRP78的ADP核糖基化形式选择性丧失,并增加了内质网应激源引起的eIF-2磷酸化的敏感性。布雷菲德菌素A降低了GRP78的ADP核糖基化,同时增加了eIF-2磷酸化。细胞质应激源亚砷酸盐通过eIF-2磷酸化抑制翻译起始而不影响内质网,也导致了GRP78的ADP核糖基化。