Vajjhala Parimala R, Lu Alvin, Brown Darren L, Pang Siew Wai, Sagulenko Vitaliya, Sester David P, Cridland Simon O, Hill Justine M, Schroder Kate, Stow Jennifer L, Wu Hao, Stacey Katryn J
From the School of Chemistry and Molecular Biosciences and.
the Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, and the Program in Cellular and Molecular Medicine, Boston Children's Hospital, Boston, Massachusetts 02115.
J Biol Chem. 2015 Dec 4;290(49):29217-30. doi: 10.1074/jbc.M115.687731. Epub 2015 Oct 14.
Inflammasomes mediate inflammatory and cell death responses to pathogens and cellular stress signals via activation of procaspases-1 and -8. During inflammasome assembly, activated receptors of the NLR or PYHIN family recruit the adaptor protein ASC and initiate polymerization of its pyrin domain (PYD) into filaments. We show that ASC filaments in turn nucleate procaspase-8 death effector domain (DED) filaments in vitro and in vivo. Interaction between ASC PYD and procaspase-8 tandem DEDs optimally required both DEDs and represents an unusual heterotypic interaction between domains of the death fold superfamily. Analysis of ASC PYD mutants showed that interaction surfaces that mediate procaspase-8 interaction overlap with those required for ASC self-association and interaction with the PYDs of inflammasome initiators. Our data indicate that multiple types of death fold domain filaments form at inflammasomes and that PYD/DED and homotypic PYD interaction modes are similar. Interestingly, we observed condensation of procaspase-8 filaments containing the catalytic domain, suggesting that procaspase-8 interactions within and/or between filaments may be involved in caspase-8 activation. Procaspase-8 filaments may also be relevant to apoptosis induced by death receptors.
炎性小体通过激活半胱天冬酶原-1和-8介导对病原体和细胞应激信号的炎症和细胞死亡反应。在炎性小体组装过程中,NLR或PYHIN家族的活化受体招募接头蛋白ASC,并启动其吡啉结构域(PYD)聚合成细丝。我们发现,ASC细丝在体外和体内依次促使半胱天冬酶原-8死亡效应结构域(DED)细丝成核。ASC PYD与半胱天冬酶原-8串联DED之间的相互作用最佳地需要两个DED,并且代表了死亡折叠超家族结构域之间一种不寻常的异型相互作用。对ASC PYD突变体的分析表明,介导半胱天冬酶原-8相互作用的相互作用表面与ASC自缔合以及与炎性小体启动子的PYD相互作用所需的表面重叠。我们的数据表明,在炎性小体处形成多种类型的死亡折叠结构域细丝,并且PYD/DED和同型PYD相互作用模式相似。有趣的是,我们观察到含有催化结构域的半胱天冬酶原-8细丝发生凝聚,这表明细丝内和/或细丝之间的半胱天冬酶原-8相互作用可能参与半胱天冬酶-8的激活。半胱天冬酶原-8细丝也可能与死亡受体诱导的细胞凋亡有关。