Singh Nitu, Senapati Sanjib, Bose Kakoli
Integrated Biophysics and Structural Biology (IBSB) Laboratory, Advanced Centre for Treatment, Research and Education in Cancer (ACTREC), Navi Mumbai, India.
Department of Biotechnology, Office No. 503, Lab No. 510, Indian Institute of Technology Madras, Adyar, Chennai, 600036, India.
Sci Rep. 2016 Feb 24;6:21408. doi: 10.1038/srep21408.
High-risk human papillomavirus (HR-HPV) E2 protein, the master regulator of viral life cycle, induces apoptosis of host cell that is independent of its virus-associated regulatory functions. E2 protein of HR-HPV18 has been found to be involved in novel FADD-independent activation of caspase-8, however, the molecular basis of this unique non-death-fold E2-mediated apoptosis is poorly understood. Here, with an interdisciplinary approach that involves in silico, mutational, biochemical and biophysical probes, we dissected and characterized the E2-procasapse-8 binding interface. Our data demonstrate direct non-homotypic interaction of HPV18 E2 transactivation domain (TAD) with α2/α5 helices of procaspase-8 death effector domain-B (DED-B). The observed interaction mimics the homotypic DED-DED complexes, wherein the conserved hydrophobic motif of procaspase-8 DED-B (F122/L123) occupies a groove between α2/α3 helices of E2 TAD. This interaction possibly drives DED oligomerization leading to caspase-8 activation and subsequent cell death. Furthermore, our data establish a model for E2-induced apoptosis in HR-HPV types and provide important clues for designing E2 analogs that might modulate procaspase-8 activation and hence apoptosis.
高危型人乳头瘤病毒(HR-HPV)E2蛋白是病毒生命周期的主要调节因子,可诱导宿主细胞凋亡,且该凋亡过程独立于其病毒相关调节功能。研究发现,HR-HPV18的E2蛋白参与了半胱天冬酶-8(caspase-8)新的不依赖FADD的激活过程,然而,这种独特的非死亡结构域E2介导的凋亡的分子基础仍知之甚少。在此,我们采用了一种跨学科方法,涉及计算机模拟、突变、生化和生物物理探针,剖析并表征了E2与前体caspase-8的结合界面。我们的数据表明,HPV18 E2反式激活结构域(TAD)与前体caspase-8死亡效应结构域B(DED-B)的α2/α5螺旋直接发生非同源相互作用。观察到的这种相互作用模拟了同源DED-DED复合物,其中前体caspase-8 DED-B的保守疏水基序(F122/L123)位于E2 TAD的α2/α3螺旋之间的凹槽中。这种相互作用可能驱动DED寡聚化,导致caspase-8激活及随后的细胞死亡。此外,我们的数据建立了HR-HPV类型中E2诱导凋亡的模型,并为设计可能调节前体caspase-8激活从而调节凋亡的E2类似物提供了重要线索。