Frisch S M
The Burnham Institute 10901 North Torrey Pines Road, La Jolla, California 92037, USA.
Curr Biol. 1999 Sep 23;9(18):1047-9. doi: 10.1016/s0960-9822(99)80455-2.
Normal epithelial cells undergo apoptosis if integrinmediated matrix contacts are lost, in a process termed 'anoikis'. Anoikis prevents shed epithelial cells from colonizing elsewhere, and is thus essential for maintaining appropriate tissue organisation. Aberrant oncogenes or tumor suppressor genes can cause resistance to anoikis, thereby contributing substantially to malignancy. Apoptosis is mediated by a well-ordered signaling cascade, which involves activation of intracellular proteases known as caspases. However, the mechanism by which the caspase cascade is initiated following cell-matrix detachment is unknown. We have hypothesized that death receptor activation might be involved in anoikis. To test this hypothesis, we developed a transient assay for anoikis and used it to assay the effects of proteins that block the function of domains found within death receptors known as death domains. In this assay, silencer of death domains (SODD) and dominant-negative FAS-associated death domain protein (FADD) efficiently inhibited anoikis in Madin-Darby canine kidney (MDCK) cells. The protective activity of SODD required its BAG domain, which interacts with the heat shock proteins hsp70 and hsc70, and inhibits the chaperone activity of the latter. Both caspase 8, which physically associates with death receptors, and cleavage of the caspase-8 substrate BID, were activated by cell-matrix detachment. These findings indicate a role for death receptors or proteins with related death domains in triggering anoikis.
如果整合素介导的基质接触丧失,正常上皮细胞会经历凋亡,这一过程称为“失巢凋亡”。失巢凋亡可防止脱落的上皮细胞在其他部位定植,因此对于维持适当的组织结构至关重要。异常的癌基因或肿瘤抑制基因可导致对失巢凋亡的抵抗,从而在很大程度上促成恶性肿瘤。凋亡由一个有序的信号级联介导,该级联涉及激活称为半胱天冬酶的细胞内蛋白酶。然而,细胞与基质分离后启动半胱天冬酶级联反应的机制尚不清楚。我们推测死亡受体激活可能参与失巢凋亡。为了验证这一假设,我们开发了一种失巢凋亡的瞬时检测方法,并利用它来检测阻断死亡受体中称为死亡结构域的结构域功能的蛋白质的作用。在该检测中,死亡结构域沉默蛋白(SODD)和显性负性FAS相关死亡结构域蛋白(FADD)有效抑制了Madin-Darby犬肾(MDCK)细胞中的失巢凋亡。SODD的保护活性需要其BAG结构域,该结构域与热休克蛋白hsp70和hsc70相互作用,并抑制后者的伴侣活性。与死亡受体物理结合的半胱天冬酶8以及半胱天冬酶8底物BID的裂解均因细胞与基质的分离而被激活。这些发现表明死亡受体或具有相关死亡结构域的蛋白质在触发失巢凋亡中起作用。