Baran Katherine, Dunstone Michelle, Chia Jenny, Ciccone Annette, Browne Kylie A, Clarke Christopher J P, Lukoyanova Natalya, Saibil Helen, Whisstock James C, Voskoboinik Ilia, Trapani Joseph A
Cancer Immunology Program, Peter MacCallum Cancer Centre, St Andrew's Place, East Melbourne, Victoria 3002, Australia.
Immunity. 2009 May;30(5):684-95. doi: 10.1016/j.immuni.2009.03.016. Epub 2009 May 14.
Perforin, a pore-forming protein secreted by cytotoxic lymphocytes, is indispensable for destroying virus-infected cells and for maintaining immune homeostasis. Perforin polymerizes into transmembrane channels that inflict osmotic stress and facilitate target cell uptake of proapoptotic granzymes. Despite this, the mechanism through which perforin monomers self-associate remains unknown. Our current study establishes the molecular basis for perforin oligomerization and pore assembly. We show that after calcium-dependent membrane binding, direct ionic attraction between the opposite faces of adjacent perforin monomers was necessary for pore formation. By using mutagenesis, we identified the opposing charges on residues Arg213 (positive) and Glu343 (negative) to be critical for intermolecular interaction. Specifically, disrupting this interaction had no effect on perforin synthesis, folding, or trafficking in the killer cell, but caused a marked kinetic defect of oligomerization at the target cell membrane, severely disrupting lysis and granzyme B-induced apoptosis. Our study provides important insights into perforin's mechanism of action.
穿孔素是一种由细胞毒性淋巴细胞分泌的成孔蛋白,对于破坏病毒感染细胞和维持免疫稳态不可或缺。穿孔素聚合成跨膜通道,造成渗透应激并促进靶细胞摄取促凋亡颗粒酶。尽管如此,穿孔素单体自缔合的机制仍不清楚。我们目前的研究建立了穿孔素寡聚化和孔组装的分子基础。我们发现,在钙依赖性膜结合后,相邻穿孔素单体相对面之间的直接离子吸引力对于孔形成是必需的。通过诱变,我们确定了残基Arg213(带正电)和Glu343(带负电)上的相反电荷对于分子间相互作用至关重要。具体而言,破坏这种相互作用对穿孔素在杀伤细胞中的合成、折叠或运输没有影响,但在靶细胞膜上导致明显的寡聚化动力学缺陷,严重破坏裂解和颗粒酶B诱导的凋亡。我们的研究为穿孔素的作用机制提供了重要见解。