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Caspase-8 tyrosine-380 phosphorylation inhibits CD95 DISC function by preventing procaspase-8 maturation and cycling within the complex

机译:Caspase-8酪氨酸380磷酸化通过阻止procaspase-8成熟和在复合物中循环而抑制CD95 DISC功能

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摘要

Caspase-8 is a key initiator of apoptotic cell death where it functions as the apical protease in death receptor-mediated apoptosis triggered via the death-inducing signalling complex (DISC). However, the observation that caspase-8 is upregulated in many common tumour types led to the discovery of alternative non-apoptotic, pro-survival functions, many of which are contingent on phosphorylation of a tyrosine residue (Y380) found in the linker region between the two catalytic domains of the enzyme. Furthermore, Src-mediated Y380 phosphorylation leads to increased resistance to CD95-induced apoptosis; however, the mechanism underlying this impaired response to extrinsic apoptotic stimuli has not been identified. Consequently, we have employed a number of model systems to further dissect this protective mechanism. First, using an in vitro DISC model together with recombinant procaspase-8 variants, we show that Y380 phosphorylation inhibits procaspase-8 activation at the CD95 DISC, thereby preventing downstream activation of the caspase cascade. Second, we validated this finding in a cellular context using transfected neuroblastoma cell lines deficient in caspase-8. Reconstitution of these lines with phosphomimetic-caspase-8 results in increased resistance to CD95-mediated apoptosis and enhanced cell migration. When the in vitro DISC is assembled in the presence of cell lysate, caspase-8 Y380 phosphorylation attenuates DISC activity by inhibiting procaspase-8 autoproteolytic activity but not recruitment or homodimerization of caspase-8 within the complex. Once incorporated into the DISC, phosphorylated caspase-8 is unable to be released from the complex; this inhibits further cycling and release of active catalytic subunits into the cytoplasm, thus resulting in increased apoptotic resistance. Taken together, our novel findings expand our understanding of the key mechanisms underlying the anti-apoptotic functions of caspase-8 which may act as a critical block to existing antitumour therapies. Importantly, reversal or inhibition of caspase-8 phosphorylation may prove a valuable avenue to explore for sensitization of resistant tumours to extrinsic apoptotic stimuli.
机译:Caspase-8是凋亡细胞死亡的关键引发剂,它在通过死亡诱导信号复合物(DISC)触发的死亡受体介导的凋亡中充当顶蛋白酶。然而,观察到caspase-8在许多常见的肿瘤类型中上调,导致发现了其他非凋亡的促生存功能,其中许多功能取决于酪氨酸残基(Y380)磷酸化之间的连接区。酶的两个催化结构域。此外,Src介导的Y380磷酸化导致对CD95诱导的细胞凋亡的抗性增加。但是,尚未确定这种对外在凋亡刺激反应减弱的机制。因此,我们采用了许多模型系统来进一步剖析这种保护机制。首先,使用体外DISC模型与重组procaspase-8变体一起,我们显示Y380磷酸化抑制CD95 DISC处的procaspase-8激活,从而防止caspase级联的下游激活。第二,我们使用caspase-8缺陷的转染的神经母细胞瘤细胞系在细胞内验证了这一发现。用磷酸化半胱氨酸天冬氨酸蛋白酶8重建这些系导致对CD95介导的细胞凋亡的抵抗力增强和细胞迁移增强。当在细胞裂解物存在的情况下组装体外DISC时,caspase-8 Y380磷酸化通过抑制procaspase-8自蛋白水解活性而减弱了复合物内caspase-8的募集或同二聚化作用,从而减弱了DISC活性。一旦掺入DISC,磷酸化的caspase-8便无法从复合物中释放出来。这抑制了进一步的循环和将活性催化亚基释放到细胞质中,从而导致凋亡抗性增加。综上所述,我们的新发现扩大了我们对caspase-8抗凋亡功能潜在关键机制的理解,这可能是现有抗肿瘤治疗的关键要素。重要的是,caspase-8磷酸化的逆转或抑制可能是探索使耐药性肿瘤对外源性凋亡刺激敏感的有价值的途径。

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