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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Functional assessment of perforin C2 domain mutations illustrates the critical role for calcium-dependent lipid binding in perforin cytotoxic function.
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Functional assessment of perforin C2 domain mutations illustrates the critical role for calcium-dependent lipid binding in perforin cytotoxic function.

机译:穿孔素C2结构域突变的功能评估说明钙依赖性脂质结合在穿孔素细胞毒性功能中的关键作用。

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Perforin-mediated lymphocyte cytotoxicity is critical for pathogen elimination and immune homeostasis. Perforin disruption of target cell membranes is hypothesized to require binding of a calcium-dependent, lipid-inserting, C2 domain. In a family affected by hemophagocytic lymphohistiocytosis, a severe inflammatory disorder caused by perforin deficiency, we identified 2 amino acid substitutions in the perforin C2 domain: T435M, a previously identified mutant with disputed pathogenicity, and Y438C, a novel substitution. Using biophysical modeling, we predicted that the T435M substitution, but not Y438C, would interfere with calcium binding and thus cytotoxic function. The capacity for cytotoxic function was tested after expression of the variant perforins in rat basophilic leukemia cells and murine cytotoxic T lymphocytes. As predicted, cells transduced with perforin-T435M lacked cytotoxicity, but those expressing perforin-Y438C displayed intact cytotoxic function. Using novel antibody-capture and liposome-binding assays, we found that both mutant perforins were secreted; however, only nonmutated and Y438C-substituted perforins were capable of calcium-dependent lipid binding. In addition, we found that perforin-Y438C was capable of mediating cytotoxicity without apparent proteolytic maturation. This study clearly demonstrates the pathogenicity of the T435M mutation and illustrates, for the first time, the critical role of the human perforin C2 domain for calcium-dependent, cytotoxic function.
机译:穿孔素介导的淋巴细胞的细胞毒性对于消除病原体和免疫稳态至关重要。假设靶细胞膜的穿孔素破坏需要结合钙依赖性的,插入脂质的C2结构域。在一个受穿孔素缺乏症引起的严重炎症性疾病-吞噬性淋巴细胞组织细胞增生症的家庭中,我们在穿孔素C2域中鉴定了2个氨基酸取代:T435M(一种先前鉴定的具有致病性的突变体)和Y438C,一种新型取代。使用生物物理模型,我们预测T435M取代而不是Y438C会干扰钙结合,从而干扰细胞毒性功能。在大鼠嗜碱性粒细胞白血病细胞和鼠细胞毒性T淋巴细胞中表达穿孔素后,测试细胞毒性功能的能力。如所预测的,用穿孔素-T435M转导的细胞没有细胞毒性,但是表达穿孔素-Y438C的那些细胞显示完整的细胞毒性功能。使用新颖的抗体捕获和脂质体结合测定法,我们发现两种突变型穿孔素均被分泌。但是,只有未突变的和Y438C取代的穿孔素能够进行钙依赖性脂质结合。此外,我们发现穿孔素Y438C能够介导细胞毒性而没有明显的蛋白水解成熟。这项研究清楚地证明了T435M突变的致病性,并首次说明了人穿孔素C2结构域对钙依赖性细胞毒性功能的关键作用。

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