He H, Lam M, McCormick T S, Distelhorst C W
Departments of Medicine and Pharmacology, Case Western Reserve University, Cleveland, Ohio 44106, USA.
J Cell Biol. 1997 Sep 22;138(6):1219-28. doi: 10.1083/jcb.138.6.1219.
The oncogene bcl-2 encodes a 26-kD protein localized to intracellular membranes, including the ER, mitochondria, and perinuclear membrane, but its mechanism of action is unknown. We have been investigating the hypothesis that Bcl-2 regulates the movement of calcium ions (Ca2+) through the ER membrane. Earlier findings in this laboratory indicated that Bcl-2 reduces Ca2+ efflux from the ER lumen in WEHI7.2 lymphoma cells treated with the Ca2+-ATPase inhibitor thapsigargin (TG) but does not prevent capacitative entry of extracellular calcium. In this report, we show that sustained elevation of cytosolic Ca2+ due to capacitative entry is not required for induction of apoptosis by TG, suggesting that ER calcium pool depletion may trigger apoptosis. Bcl-2 overexpression maintains Ca2+ uptake in the ER of TG-treated cells and prevents a TG-imposed delay in intralumenal processing of the endogenous glycoprotein cathepsin D. Also, Bcl-2 overexpression preserves the ER Ca2+ pool in untreated cells when extracellular Ca2+ is low. However, low extracellular Ca2+ reduces the antiapoptotic action of Bcl-2, suggesting that cytosolic Ca2+ elevation due to capacitative entry may be required for optimal ER pool filling and apoptosis inhibition by Bcl-2. In summary, the findings suggest that Bcl-2 maintains Ca2+ homeostasis within the ER, thereby inhibiting apoptosis induction by TG.
癌基因bcl-2编码一种26-kD的蛋白质,定位于细胞内膜,包括内质网(ER)、线粒体和核周膜,但其作用机制尚不清楚。我们一直在研究Bcl-2通过内质网膜调节钙离子(Ca2+)转运的假说。本实验室早期的研究结果表明,在用Ca2+-ATP酶抑制剂毒胡萝卜素(TG)处理的WEHI7.2淋巴瘤细胞中,Bcl-2可减少内质网腔中Ca2+的外流,但不能阻止细胞外钙的容量性内流。在本报告中,我们表明,TG诱导凋亡并不需要容量性内流导致的胞质Ca2+持续升高,这表明内质网钙库耗竭可能触发凋亡。Bcl-2的过表达可维持TG处理细胞内质网对Ca2+的摄取,并防止TG对内源性糖蛋白组织蛋白酶D腔内加工的延迟作用。此外,当细胞外Ca2+浓度较低时,Bcl-2的过表达可在未处理的细胞中维持内质网Ca2+库。然而,低细胞外Ca2+会降低Bcl-2的抗凋亡作用,这表明容量性内流导致的胞质Ca2+升高可能是Bcl-2实现最佳内质网钙库充盈和抑制凋亡所必需的。总之,这些发现表明Bcl-2维持内质网内的Ca2+稳态,从而抑制TG诱导的凋亡。